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Algorithms And Complexity by Symposium On New Directions And Recent Results In Algorithms And Complexity Carnegie Mellon University 1976.
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1Exploring Heuristic Algorithms For The Knapsack Problem: A Comparative Analysis Of Program Complexity And Computational Efficiency
By Bashar Bin Usman, Saminu Isah Kanoma, Ibrahim Zakariyau Hashimu Abubakar Niworu and Adebayo Ademola Rilwan
Abstract The knapsack problem is an optimization problem in computer science which involves determining the most valuable combination of items that can be packed into a knapsack (a container) with a limited capacity (weight or volume); the goal is to maximize the total profit of the items included in the knapsack without exceeding its capacity. This study extensively analyzes the knapsack problem, exploring the application of three prevalent heuristics: greedy, dynamic programming, and FPTAS algorithms implemented in Python. The study aims to assess how these algorithms perform differently, focusing on program complexity and computational speed. Our main objective is to compare these algorithms and determine the most effective one for solving the knapsack problem as well as to be chosen by the researchers and developers when dealing similar problem in real-world applications. Our methodology involved solving the knapsack problem using the three algorithms within a unified programming environment. We conducted experiments using varying input datasets and recorded the time complexities of the algorithms in each trial. Additionally, we performed Halstead complexity measurements to derive the volume of each algorithm for this study. Subsequently, we compared program complexity in Halstead metrics and computational speed for the three approaches. The research findings reveal that the Greedy algorithm demonstrates superior computational efficiency compared to both Dynamic Programming (D.P) and FPTAS algorithms across various test cases. To advance understanding of the knapsack problem, future research should focus on investigating the performance of other programming languages in addressing combinatorial optimization problems, which would provide valuable insights into language choice impact. Additionally, integrating parallel computing techniques could accelerate solution processes for large-scale problem instances.
“Exploring Heuristic Algorithms For The Knapsack Problem: A Comparative Analysis Of Program Complexity And Computational Efficiency” Metadata:
- Title: ➤ Exploring Heuristic Algorithms For The Knapsack Problem: A Comparative Analysis Of Program Complexity And Computational Efficiency
- Author: ➤ Bashar Bin Usman, Saminu Isah Kanoma, Ibrahim Zakariyau Hashimu Abubakar Niworu and Adebayo Ademola Rilwan
- Language: English
“Exploring Heuristic Algorithms For The Knapsack Problem: A Comparative Analysis Of Program Complexity And Computational Efficiency” Subjects and Themes:
- Subjects: Knapsack problem - Heuristics - Computational efficiency - Halstead metrics Python programming - Combinatorial optimization
Edition Identifiers:
- Internet Archive ID: bashar_202409
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2DTIC AD1020232: Skip-Over: Algorithms And Complexity For Overloaded Systems That Allow Skips
By Defense Technical Information Center
In applications ranging from video reception to telecommunications and packet communication to aircraft control, tasks enter periodically and have fixed response time constraints, but missing a deadline is acceptable, provided most deadlines are met. We call such tasks occasionally skippable. We look at the problem of uniprocessor scheduling of occasionally skippable periodic tasks in an environment having periodic tasks. We show that masking optimal use of skips is NP-hard. We then look at two algorithms called Skip-Over Algorithms (one a variant of earliest deadline first and one of rate monotonic scheduling) that exploit skips. We give schedulability bounds for both.
“DTIC AD1020232: Skip-Over: Algorithms And Complexity For Overloaded Systems That Allow Skips” Metadata:
- Title: ➤ DTIC AD1020232: Skip-Over: Algorithms And Complexity For Overloaded Systems That Allow Skips
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC AD1020232: Skip-Over: Algorithms And Complexity For Overloaded Systems That Allow Skips” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Koren,Gilad - Courant Institute of Mathematical Sciences New York United States - packets - scheduling - algorithms - real time - processing equipment
Edition Identifiers:
- Internet Archive ID: DTIC_AD1020232
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The book is available for download in "texts" format, the size of the file-s is: 8.14 Mbs, the file-s for this book were downloaded 42 times, the file-s went public at Sat Dec 14 2019.
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3Complexity Results And Practical Algorithms For Logics In Knowledge Representation
By Stephan Tobies
Description Logics (DLs) are used in knowledge-based systems to represent and reason about terminological knowledge of the application domain in a semantically well-defined manner. In this thesis, we establish a number of novel complexity results and give practical algorithms for expressive DLs that provide different forms of counting quantifiers. We show that, in many cases, adding local counting in the form of qualifying number restrictions to DLs does not increase the complexity of the inference problems, even if binary coding of numbers in the input is assumed. On the other hand, we show that adding different forms of global counting restrictions to a logic may increase the complexity of the inference problems dramatically. We provide exact complexity results and a practical, tableau based algorithm for the DL SHIQ, which forms the basis of the highly optimized DL system iFaCT. Finally, we describe a tableau algorithm for the clique guarded fragment (CGF), which we hope will serve as the basis for an efficient implementation of a CGF reasoner.
“Complexity Results And Practical Algorithms For Logics In Knowledge Representation” Metadata:
- Title: ➤ Complexity Results And Practical Algorithms For Logics In Knowledge Representation
- Author: Stephan Tobies
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-cs0106031
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4Predicting Ground State Properties: Constant Sample Complexity And Deep Learning Algorithms
By QTML Conference
Talk by Marc Wanner - Predicting Ground State Properties: Constant Sample Complexity and Deep Learning Algorithms @QTMLConference
“Predicting Ground State Properties: Constant Sample Complexity And Deep Learning Algorithms” Metadata:
- Title: ➤ Predicting Ground State Properties: Constant Sample Complexity And Deep Learning Algorithms
- Author: QTML Conference
“Predicting Ground State Properties: Constant Sample Complexity And Deep Learning Algorithms” Subjects and Themes:
- Subjects: Youtube - video - People & Blogs
Edition Identifiers:
- Internet Archive ID: youtube-IMZ0U4Uz2kU
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The book is available for download in "movies" format, the size of the file-s is: 186.25 Mbs, the file-s for this book were downloaded 10 times, the file-s went public at Sun Jan 05 2025.
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5Near-Optimal Sensor Scheduling For Batch State Estimation: Complexity, Algorithms, And Limits
By Vasileios Tzoumas, Ali Jadbabaie and George J. Pappas
In this paper, we focus on batch state estimation for linear systems. This problem is important in applications such as environmental field estimation, robotic navigation, and target tracking. Its difficulty lies on that limited operational resources among the sensors, e.g., shared communication bandwidth or battery power, constrain the number of sensors that can be active at each measurement step. As a result, sensor scheduling algorithms must be employed. Notwithstanding, current sensor scheduling algorithms for batch state estimation scale poorly with the system size and the time horizon. In addition, current sensor scheduling algorithms for Kalman filtering, although they scale better, provide no performance guarantees or approximation bounds for the minimization of the batch state estimation error. In this paper, one of our main contributions is to provide an algorithm that enjoys both the estimation accuracy of the batch state scheduling algorithms and the low time complexity of the Kalman filtering scheduling algorithms. In particular: 1) our algorithm is near-optimal: it achieves a solution up to a multiplicative factor 1/2 from the optimal solution, and this factor is close to the best approximation factor 1/e one can achieve in polynomial time for this problem; 2) our algorithm has (polynomial) time complexity that is not only lower than that of the current algorithms for batch state estimation; it is also lower than, or similar to, that of the current algorithms for Kalman filtering. We achieve these results by proving two properties for our batch state estimation error metric, which quantifies the square error of the minimum variance linear estimator of the batch state vector: a) it is supermodular in the choice of the sensors; b) it has a sparsity pattern (it involves matrices that are block tri-diagonal) that facilitates its evaluation at each sensor set.
“Near-Optimal Sensor Scheduling For Batch State Estimation: Complexity, Algorithms, And Limits” Metadata:
- Title: ➤ Near-Optimal Sensor Scheduling For Batch State Estimation: Complexity, Algorithms, And Limits
- Authors: Vasileios TzoumasAli JadbabaieGeorge J. Pappas
“Near-Optimal Sensor Scheduling For Batch State Estimation: Complexity, Algorithms, And Limits” Subjects and Themes:
- Subjects: ➤ Mathematics - Optimization and Control - Dynamical Systems - Systems and Control - Computing Research Repository - Robotics
Edition Identifiers:
- Internet Archive ID: arxiv-1608.07533
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The book is available for download in "texts" format, the size of the file-s is: 0.23 Mbs, the file-s for this book were downloaded 25 times, the file-s went public at Fri Jun 29 2018.
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6On Practical Algorithms For Entropy Estimation And The Improved Sample Complexity Of Compressed Counting
By Ping Li
Estimating the p-th frequency moment of data stream is a very heavily studied problem. The problem is actually trivial when p = 1, assuming the strict Turnstile model. The sample complexity of our proposed algorithm is essentially O(1) near p=1. This is a very large improvement over the previously believed O(1/eps^2) bound. The proposed algorithm makes the long-standing problem of entropy estimation an easy task, as verified by the experiments included in the appendix.
“On Practical Algorithms For Entropy Estimation And The Improved Sample Complexity Of Compressed Counting” Metadata:
- Title: ➤ On Practical Algorithms For Entropy Estimation And The Improved Sample Complexity Of Compressed Counting
- Author: Ping Li
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-1004.3782
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7Complexity And Algorithms For Finding A Perfect Phylogeny From Mixed Tumor Samples
By Ademir Hujdurović, Urša Kačar, Martin Milanič, Bernard Ries and Alexandru I. Tomescu
Recently, Hajirasouliha and Raphael (WABI 2014) proposed a model for deconvoluting mixed tumor samples measured from a collection of high-throughput sequencing reads. This is related to understanding tumor evolution and critical cancer mutations. In short, their formulation asks to split each row of a binary matrix so that the resulting matrix corresponds to a perfect phylogeny and has the minimum number of rows among all matrices with this property. In this paper we disprove several claims about this problem, including an NP-hardness proof of it. However, we show that the problem is indeed NP-hard, by providing a different proof. We also prove NP-completeness of a variant of this problem proposed in the same paper. On the positive side, we propose an efficient (though not necessarily optimal) heuristic algorithm based on coloring co-comparability graphs, and a polynomial time algorithm for solving the problem optimally on matrix instances in which no column is contained in both columns of a pair of conflicting columns. Implementations of these algorithms are freely available at https://github.com/alexandrutomescu/MixedPerfectPhylogeny
“Complexity And Algorithms For Finding A Perfect Phylogeny From Mixed Tumor Samples” Metadata:
- Title: ➤ Complexity And Algorithms For Finding A Perfect Phylogeny From Mixed Tumor Samples
- Authors: Ademir HujdurovićUrša KačarMartin MilaničBernard RiesAlexandru I. Tomescu
- Language: English
“Complexity And Algorithms For Finding A Perfect Phylogeny From Mixed Tumor Samples” Subjects and Themes:
- Subjects: ➤ Computational Complexity - Quantitative Biology - Populations and Evolution - Discrete Mathematics - Data Structures and Algorithms - Computing Research Repository
Edition Identifiers:
- Internet Archive ID: arxiv-1506.07675
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8Internal Diffusion-Limited Aggregation: Parallel Algorithms And Complexity
By Cristopher Moore and Jonathan Machta
The computational complexity of internal diffusion-limited aggregation (DLA) is examined from both a theoretical and a practical point of view. We show that for two or more dimensions, the problem of predicting the cluster from a given set of paths is complete for the complexity class CC, the subset of P characterized by circuits composed of comparator gates. CC-completeness is believed to imply that, in the worst case, growing a cluster of size n requires polynomial time in n even on a parallel computer. A parallel relaxation algorithm is presented that uses the fact that clusters are nearly spherical to guess the cluster from a given set of paths, and then corrects defects in the guessed cluster through a non-local annihilation process. The parallel running time of the relaxation algorithm for two-dimensional internal DLA is studied by simulating it on a serial computer. The numerical results are compatible with a running time that is either polylogarithmic in n or a small power of n. Thus the computational resources needed to grow large clusters are significantly less on average than the worst-case analysis would suggest. For a parallel machine with k processors, we show that random clusters in d dimensions can be generated in O((n/k + log k) n^{2/d}) steps. This is a significant speedup over explicit sequential simulation, which takes O(n^{1+2/d}) time on average. Finally, we show that in one dimension internal DLA can be predicted in O(log n) parallel time, and so is in the complexity class NC.
“Internal Diffusion-Limited Aggregation: Parallel Algorithms And Complexity” Metadata:
- Title: ➤ Internal Diffusion-Limited Aggregation: Parallel Algorithms And Complexity
- Authors: Cristopher MooreJonathan Machta
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-cond-mat9909233
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The book is available for download in "texts" format, the size of the file-s is: 13.43 Mbs, the file-s for this book were downloaded 91 times, the file-s went public at Mon Sep 23 2013.
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9Algorithms And Complexity
By Wilf, Herbert S., 1931-
The computational complexity of internal diffusion-limited aggregation (DLA) is examined from both a theoretical and a practical point of view. We show that for two or more dimensions, the problem of predicting the cluster from a given set of paths is complete for the complexity class CC, the subset of P characterized by circuits composed of comparator gates. CC-completeness is believed to imply that, in the worst case, growing a cluster of size n requires polynomial time in n even on a parallel computer. A parallel relaxation algorithm is presented that uses the fact that clusters are nearly spherical to guess the cluster from a given set of paths, and then corrects defects in the guessed cluster through a non-local annihilation process. The parallel running time of the relaxation algorithm for two-dimensional internal DLA is studied by simulating it on a serial computer. The numerical results are compatible with a running time that is either polylogarithmic in n or a small power of n. Thus the computational resources needed to grow large clusters are significantly less on average than the worst-case analysis would suggest. For a parallel machine with k processors, we show that random clusters in d dimensions can be generated in O((n/k + log k) n^{2/d}) steps. This is a significant speedup over explicit sequential simulation, which takes O(n^{1+2/d}) time on average. Finally, we show that in one dimension internal DLA can be predicted in O(log n) parallel time, and so is in the complexity class NC.
“Algorithms And Complexity” Metadata:
- Title: Algorithms And Complexity
- Author: Wilf, Herbert S., 1931-
- Language: English
“Algorithms And Complexity” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: algorithmscomple0000wilf_e2p0
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10DTIC ADA560304: Optimal And Low-complexity Algorithms For Dynamic Spectrum Access In Centralized Cognitive Radio Networks With Fading Channels
By Defense Technical Information Center
In this paper, we develop a centralized spectrum sensing and Dynamic Spectrum Access (DSA) scheme for secondary users (SUs) in a Cognitive Radio (CR) network. Assuming that the primary channel occupancy follows a Markovian evolution, the channel sensing problem is modeled as a Partially Observable Markov Decision Process (POMDP). We assume that each SU can sense only one channel at a time by using energy detection, and the sensing outcomes are then reported to a central unit, called the secondary system decision center (SSDC), that determines the channel sensing/accessing policies. We derive both the optimal channel assignment policy for secondary users to sense the primary channels, and the optimal channel access rule. Our proposed optimal sensing and accessing policies alleviate many shortcomings and limitations of existing proposals: (a) ours allows fully utilizing all available primary spectrum white spaces, (b) our model, and thus the proposed solution, exploits the temporal and spatial diversity across different primary channels and (c) is based on realistic local sensing decisions rather than complete knowledge of primary signalling structure. As an alternative to the high complexity of the optimal channel sensing policy, a suboptimal sensing policy is obtained by using the Hungarian algorithm iteratively, which reduces the complexity of the channel assignment from an exponential to a polynomial order. We also propose a heuristic algorithm that reduces the complexity of the sensing policy further to a linear order. The simulation results show that the proposed algorithms achieve a near-optimal performance with a significant reduction in computational time.
“DTIC ADA560304: Optimal And Low-complexity Algorithms For Dynamic Spectrum Access In Centralized Cognitive Radio Networks With Fading Channels” Metadata:
- Title: ➤ DTIC ADA560304: Optimal And Low-complexity Algorithms For Dynamic Spectrum Access In Centralized Cognitive Radio Networks With Fading Channels
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA560304: Optimal And Low-complexity Algorithms For Dynamic Spectrum Access In Centralized Cognitive Radio Networks With Fading Channels” Subjects and Themes:
- Subjects: ➤ DTIC Archive - NEW MEXICO UNIV ALBUQUERQUE DEPT OF ELECTRICAL ENGINEERING AND COMPUTER SCIENCE - *COMMUNICATIONS NETWORKS - *DYNAMICS - *SPECTRUM ANALYSIS - ALGORITHMS - FADING(ELECTROMAGNETIC WAVES) - SPATIAL DISTRIBUTION
Edition Identifiers:
- Internet Archive ID: DTIC_ADA560304
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The book is available for download in "texts" format, the size of the file-s is: 6.66 Mbs, the file-s for this book were downloaded 41 times, the file-s went public at Sun Sep 02 2018.
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11Algorithms And Complexity For Turaev-Viro Invariants
By Benjamin A. Burton, Clément Maria and Jonathan Spreer
The Turaev-Viro invariants are a powerful family of topological invariants for distinguishing between different 3-manifolds. They are invaluable for mathematical software, but current algorithms to compute them require exponential time. The invariants are parameterised by an integer $r \geq 3$. We resolve the question of complexity for $r=3$ and $r=4$, giving simple proofs that computing Turaev-Viro invariants for $r=3$ is polynomial time, but for $r=4$ is \#P-hard. Moreover, we give an explicit fixed-parameter tractable algorithm for arbitrary $r$, and show through concrete implementation and experimentation that this algorithm is practical---and indeed preferable---to the prior state of the art for real computation.
“Algorithms And Complexity For Turaev-Viro Invariants” Metadata:
- Title: ➤ Algorithms And Complexity For Turaev-Viro Invariants
- Authors: Benjamin A. BurtonClément MariaJonathan Spreer
- Language: English
“Algorithms And Complexity For Turaev-Viro Invariants” Subjects and Themes:
- Subjects: ➤ Mathematical Software - Geometric Topology - Computational Complexity - Data Structures and Algorithms - Mathematics - Computing Research Repository
Edition Identifiers:
- Internet Archive ID: arxiv-1503.04099
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12Automata, Computability, And Complexity- Quantum Algorithms
By Scott Aaronson
Of course the real question is: can quantum computers actually do something more e_ciently than classical computers? In this lecture, we�ll see why the modern consensus is that they can.
“Automata, Computability, And Complexity- Quantum Algorithms” Metadata:
- Title: ➤ Automata, Computability, And Complexity- Quantum Algorithms
- Author: Scott Aaronson
- Language: English
“Automata, Computability, And Complexity- Quantum Algorithms” Subjects and Themes:
- Subjects: Maths - Mathematics
Edition Identifiers:
- Internet Archive ID: flooved1307
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13DTIC ADA121995: Representation Techniques For Relational Languages And The Worst Case Asymptotical Time Complexity Behaviour Of The Related Algorithms.
By Defense Technical Information Center
This thesis is aimed at determining the worst case asymptotical time complexity behaviour of algorithms for relational operations that work on extensionally or intensionally represented binary relatons. Those relational operations came from a relational language being designed at Naval Postgraduate School. One particular extensional representation technique and two intensional representation techniques are proposed. The above analysis in turn determines the feasibility of implementing a subset of the relational language on conventional architectures. (Author)
“DTIC ADA121995: Representation Techniques For Relational Languages And The Worst Case Asymptotical Time Complexity Behaviour Of The Related Algorithms.” Metadata:
- Title: ➤ DTIC ADA121995: Representation Techniques For Relational Languages And The Worst Case Asymptotical Time Complexity Behaviour Of The Related Algorithms.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA121995: Representation Techniques For Relational Languages And The Worst Case Asymptotical Time Complexity Behaviour Of The Related Algorithms.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Futaci,Suha - NAVAL POSTGRADUATE SCHOOL MONTEREY CA - *ALGORITHMS - *PROGRAMMING LANGUAGES - *TIME - *ASYMPTOTIC SERIES - DECISION MAKING - EXPERIMENTAL DESIGN - STRUCTURES - COMPUTER ARCHITECTURE - THESES - CASE STUDIES - FEASIBILITY STUDIES - TABLES(DATA) - STORAGE - SUBROUTINES - SET THEORY - BINARY ARITHMETIC
Edition Identifiers:
- Internet Archive ID: DTIC_ADA121995
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The book is available for download in "texts" format, the size of the file-s is: 207.21 Mbs, the file-s for this book were downloaded 66 times, the file-s went public at Sun Jan 07 2018.
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14Coordinate Descent With Arbitrary Sampling I: Algorithms And Complexity
By Zheng Qu and Peter Richtárik
We study the problem of minimizing the sum of a smooth convex function and a convex block-separable regularizer and propose a new randomized coordinate descent method, which we call ALPHA. Our method at every iteration updates a random subset of coordinates, following an arbitrary distribution. No coordinate descent methods capable to handle an arbitrary sampling have been studied in the literature before for this problem. ALPHA is a remarkably flexible algorithm: in special cases, it reduces to deterministic and randomized methods such as gradient descent, coordinate descent, parallel coordinate descent and distributed coordinate descent -- both in nonaccelerated and accelerated variants. The variants with arbitrary (or importance) sampling are new. We provide a complexity analysis of ALPHA, from which we deduce as a direct corollary complexity bounds for its many variants, all matching or improving best known bounds.
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- Title: ➤ Coordinate Descent With Arbitrary Sampling I: Algorithms And Complexity
- Authors: Zheng QuPeter Richtárik
“Coordinate Descent With Arbitrary Sampling I: Algorithms And Complexity” Subjects and Themes:
- Subjects: Mathematics - Numerical Analysis - Computing Research Repository - Learning - Optimization and Control
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- Internet Archive ID: arxiv-1412.8060
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15Microsoft Research Audio 104292: Dispersion Of Mass And The Complexity Of Randomized Algorithms
By Microsoft Research
How much can randomness help computation? Motivated by this general question and by volume computation, one of the few instances where randomness probably helps, we analyze a notion of dispersion and connect it to asymptotic convex geometry. We obtain a nearly quadratic lower bound on the complexity of randomized volume algorithms for convex bodies in R n (the current best algorithm has complexity roughly n 4 and is conjectured to be n 3 ). Our main tools, dispersion of random determinants and dispersion of the length of a random point from a convex body, are of independent interest and applicable more generally; in particular, the latter is closely related to the variance hypothesis from convex geometry. This geometric dispersion also leads to lower bounds for matrix problems and property testing. This is joint work with Luis Rademacher. ©2006 Microsoft Corporation. All rights reserved.
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- Author: Microsoft Research
- Language: English
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- Subjects: ➤ Microsoft Research - Microsoft Research Audio MP3 Archive - Laszlo Lovasz - Santosh Vempala
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- Internet Archive ID: ➤ Microsoft_Research_Audio_104292
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16Idempotent And Tropical Mathematics. Complexity Of Algorithms And Interval Analysis
By G. L. Litvinov
A very brief introduction to tropical and idempotent mathematics is presented. Tropical mathematics can be treated as a result of a dequantization of the traditional mathematics as the Planck constant tends to zero taking imaginary values. In the framework of idempotent mathematics usually constructions and algorithms are more simple with respect to their traditional analogs. We especially examine algorithms of tropical/idempotent mathematics generated by a collection of basic semiring (or semifield) operations and other "good" operations. Every algorithm of this type has an interval version. The complexity of this interval version coincides with the complexity of the initial algorithm. The interval version of an algorithm of this type gives exact interval estimates for the corresponding output data. Algorithms of linear algebra over idempotent and semirings are examined. In this case, basic algorithms are polynomial as well as their interval versions. This situation is very different from the traditional linear algebra, where basic algorithms are polynomial but the corresponding interval versions are NP-hard and interval estimates are not exact.
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- Title: ➤ Idempotent And Tropical Mathematics. Complexity Of Algorithms And Interval Analysis
- Author: G. L. Litvinov
- Language: English
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- Internet Archive ID: arxiv-1209.1721
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17Analysis Of The Computational Complexity Of Solving Random Satisfiability Problems Using Branch And Bound Search Algorithms
By Simona Cocco and Remi Monasson
The computational complexity of solving random 3-Satisfiability (3-SAT) problems is investigated. 3-SAT is a representative example of hard computational tasks; it consists in knowing whether a set of alpha N randomly drawn logical constraints involving N Boolean variables can be satisfied altogether or not. Widely used solving procedures, as the Davis-Putnam-Loveland-Logeman (DPLL) algorithm, perform a systematic search for a solution, through a sequence of trials and errors represented by a search tree. In the present study, we identify, using theory and numerical experiments, easy (size of the search tree scaling polynomially with N) and hard (exponential scaling) regimes as a function of the ratio alpha of constraints per variable. The typical complexity is explicitly calculated in the different regimes, in very good agreement with numerical simulations. Our theoretical approach is based on the analysis of the growth of the branches in the search tree under the operation of DPLL. On each branch, the initial 3-SAT problem is dynamically turned into a more generic 2+p-SAT problem, where p and 1-p are the fractions of constraints involving three and two variables respectively. The growth of each branch is monitored by the dynamical evolution of alpha and p and is represented by a trajectory in the static phase diagram of the random 2+p-SAT problem. Depending on whether or not the trajectories cross the boundary between phases, single branches or full trees are generated by DPLL, resulting in easy or hard resolutions.
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- Title: ➤ Analysis Of The Computational Complexity Of Solving Random Satisfiability Problems Using Branch And Bound Search Algorithms
- Authors: Simona CoccoRemi Monasson
- Language: English
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- Internet Archive ID: arxiv-cond-mat0012191
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18DTIC ADA534847: Coordinated Beamforming For MISO Interference Channel: Complexity Analysis And Efficient Algorithms
By Defense Technical Information Center
In a cellular wireless system, users located at cell edges often suffer significant out-of-cell interference. Assuming each base station is equipped with multiple antennas, we can model this scenario as a multiple-input single-output (MISO) interference channel. In this paper we consider a coordinated beamforming approach whereby multiple base stations jointly optimize their downlink beamforming vectors in order to simultaneously improve the data rates of a given group of cell edge users. Assuming perfect channel knowledge, we formulate this problem as the maximization of a system utility (which balances user fairness and average user rates), subject to individual power constraints at each base station. We show that, for the single carrier case and when the number of antennas at each base station is at least two, the optimal coordinated beamforming problem is NP-hard for both the harmonic mean utility and the proportional fairness utility. For general utilities, we propose a cyclic coordinate descent algorithm, which enables each transmitter to update its beamformer locally with limited information exchange, and establish its global convergence to a stationary point. We illustrate its effectiveness in computer simulations by using the space matched beamformer as a benchmark.
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- Title: ➤ DTIC ADA534847: Coordinated Beamforming For MISO Interference Channel: Complexity Analysis And Efficient Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - MINNESOTA UNIV MINNEAPOLIS DEPT OF ELECTRICAL AND COMPUTER ENGINEERING - *BEAM FORMING - *MULTICHANNEL COMMUNICATIONS - *CELLULAR COMMUNICATIONS - CONVERGENCE - DOWNLINKS - MULTIPLE BEAM ANTENNAS - COMPUTERIZED SIMULATION - SIGNAL PROCESSING - ALGORITHMS - ELECTROMAGNETIC INTERFERENCE
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- Internet Archive ID: DTIC_ADA534847
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19DTIC ADA1022252: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Title: ➤ DTIC ADA1022252: Research In Complexity Theory And Combinatorial Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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- Internet Archive ID: DTIC_ADA1022252
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20Evangelism In Social Networks: Algorithms And Complexity
By Gennaro Cordasco, Luisa Gargano, Adele Anna Rescigno and Ugo Vaccaro
We consider a population of interconnected individuals that, with respect to a piece of information, at each time instant can be subdivided into three (time-dependent) categories: agnostics, influenced, and evangelists. A dynamical process of information diffusion evolves among the individuals of the population according to the following rules. Initially, all individuals are agnostic. Then, a set of people is chosen from the outside and convinced to start evangelizing, i.e., to start spreading the information. When a number of evangelists, greater than a given threshold, communicate with a node v, the node v becomes influenced, whereas, as soon as the individual v is contacted by a sufficiently much larger number of evangelists, it is itself converted into an evangelist and consequently it starts spreading the information. The question is: How to choose a bounded cardinality initial set of evangelists so as to maximize the final number of influenced individuals? We prove that the problem is hard to solve, even in an approximate sense. On the positive side, we present exact polynomial time algorithms for trees and complete graphs. For general graphs, we derive exact parameterized algorithms. We also investigate the problem when the objective is to select a minimum number of evangelists capable of influencing the whole network. Our motivations to study these problems come from the areas of Viral Marketing and the analysis of quantitative models of spreading of influence in social networks.
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- Title: ➤ Evangelism In Social Networks: Algorithms And Complexity
- Authors: Gennaro CordascoLuisa GarganoAdele Anna RescignoUgo Vaccaro
“Evangelism In Social Networks: Algorithms And Complexity” Subjects and Themes:
- Subjects: ➤ Social and Information Networks - Data Structures and Algorithms - Physics - Mathematics - Combinatorics - Computing Research Repository - Physics and Society
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- Internet Archive ID: arxiv-1610.09486
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21Computational Complexity Of Sequential And Parallel Algorithms
By Kronsjö, Lydia I
We consider a population of interconnected individuals that, with respect to a piece of information, at each time instant can be subdivided into three (time-dependent) categories: agnostics, influenced, and evangelists. A dynamical process of information diffusion evolves among the individuals of the population according to the following rules. Initially, all individuals are agnostic. Then, a set of people is chosen from the outside and convinced to start evangelizing, i.e., to start spreading the information. When a number of evangelists, greater than a given threshold, communicate with a node v, the node v becomes influenced, whereas, as soon as the individual v is contacted by a sufficiently much larger number of evangelists, it is itself converted into an evangelist and consequently it starts spreading the information. The question is: How to choose a bounded cardinality initial set of evangelists so as to maximize the final number of influenced individuals? We prove that the problem is hard to solve, even in an approximate sense. On the positive side, we present exact polynomial time algorithms for trees and complete graphs. For general graphs, we derive exact parameterized algorithms. We also investigate the problem when the objective is to select a minimum number of evangelists capable of influencing the whole network. Our motivations to study these problems come from the areas of Viral Marketing and the analysis of quantitative models of spreading of influence in social networks.
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- Title: ➤ Computational Complexity Of Sequential And Parallel Algorithms
- Author: Kronsjö, Lydia I
- Language: English
“Computational Complexity Of Sequential And Parallel Algorithms” Subjects and Themes:
- Subjects: ➤ Computer programming - Mathematics -- Data processing - Computer algorithms - Parallel processing (Electronic computers) - Sequential processing (Computer science) - Programmation (Informatique) - Mathématiques -- Informatique - Algorithmes - Parallélisme (Informatique) - Traitement séquentiel (Informatique) - 11030 algorithms - Algorithms
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- Internet Archive ID: computationalcom0000kron
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22Algorithms And Complexity
By Wilf, Herbert S., 1931-2012
We consider a population of interconnected individuals that, with respect to a piece of information, at each time instant can be subdivided into three (time-dependent) categories: agnostics, influenced, and evangelists. A dynamical process of information diffusion evolves among the individuals of the population according to the following rules. Initially, all individuals are agnostic. Then, a set of people is chosen from the outside and convinced to start evangelizing, i.e., to start spreading the information. When a number of evangelists, greater than a given threshold, communicate with a node v, the node v becomes influenced, whereas, as soon as the individual v is contacted by a sufficiently much larger number of evangelists, it is itself converted into an evangelist and consequently it starts spreading the information. The question is: How to choose a bounded cardinality initial set of evangelists so as to maximize the final number of influenced individuals? We prove that the problem is hard to solve, even in an approximate sense. On the positive side, we present exact polynomial time algorithms for trees and complete graphs. For general graphs, we derive exact parameterized algorithms. We also investigate the problem when the objective is to select a minimum number of evangelists capable of influencing the whole network. Our motivations to study these problems come from the areas of Viral Marketing and the analysis of quantitative models of spreading of influence in social networks.
“Algorithms And Complexity” Metadata:
- Title: Algorithms And Complexity
- Author: Wilf, Herbert S., 1931-2012
- Language: English
“Algorithms And Complexity” Subjects and Themes:
- Subjects: ➤ Problem solving -- Data processing - Computer algorithms - Computational complexity - Résolution de problème -- Informatique - Algorithmes - Complexité de calcul (Informatique) - Algoritmen - Complexiteit - Algorithmus - Komplexitätstheorie - Algorithms
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- Internet Archive ID: algorithmscomple0000wilf
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23DTIC ADA579191: Complexity Analysis And Algorithms For Optimal Resource Allocation In Wireless Networks
By Defense Technical Information Center
This project considers the dynamic spectrum management (DSM) problem whereby multiple users sharing a common frequency band must choose their transmit power spectra jointly in response to physical channel conditions including the effects of interference. The goal of the users is to maximize a system-wide utility function (e.g., weighted sum-rate of all users), subject to individual power constraints. The proposed work will focus on a general DSM problem formulation which allows correlated signaling rather than being restricted to the conventional independent orthogonal signaling such as OFDM. The general formulation will exploit the concept of 'interference alignment' which is known to provide substantial rate gain over OFDM signalling for general interference channels. We have successfully analyzed the complexity to characterize the optimal spectrum sharing policies and beamforming strategies in interfering broadcast networks and developed efficient computational methods for optimal resource allocations in such networks.
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- Title: ➤ DTIC ADA579191: Complexity Analysis And Algorithms For Optimal Resource Allocation In Wireless Networks
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA579191: Complexity Analysis And Algorithms For Optimal Resource Allocation In Wireless Networks” Subjects and Themes:
- Subjects: ➤ DTIC Archive - MINNESOTA UNIV MINNEAPOLIS OFFICE SPONSORED PROJECTS ADMINISTRATION - *WIRELESS COMMUNICATIONS - ALGORITHMS - BEAM FORMING - FREQUENCY ALLOCATION - INTERFERENCE - OPTIMIZATION
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- Internet Archive ID: DTIC_ADA579191
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24DTIC ADA431591: Change Detection And Estimation In Large Scale Sensor Networks: Linear Complexity Algorithms
By Defense Technical Information Center
We propose algorithms for nonparametric sample-based spacial change detection and estimation in large scale sensor networks. We collect random samples containing the location of sensors and their local decisions, and assume that the local decisions can be stimulated or normal , reflecting the local strength of some stimulating agent. Then change in the location of the agent manifests itself by a change in the distribution of stimulated sensors. In this paper, we are aiming at developing a test that, given two collections of samples, can decide whether the distribution generating the samples has changed or not, and give an estimated changed area if a change is indeed detected. The focus of this paper is to reduce the complexity of the detection and estimation algorithm. We propose two fast algorithms with almost linear complexity and analyze their completeness, flexibility and robustness.
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- Title: ➤ DTIC ADA431591: Change Detection And Estimation In Large Scale Sensor Networks: Linear Complexity Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA431591: Change Detection And Estimation In Large Scale Sensor Networks: Linear Complexity Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - He, Ting - CORNELL UNIV ITHACA NY SCHOOL OF ELECTRICAL AND COMPUTER ENGINEERING - *NONPARAMETRIC STATISTICS - *CHANGE DETECTION - SYMPOSIA - DECISION MAKING - COMMUNICATIONS NETWORKS - LARGE SCALE INTEGRATION
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- Internet Archive ID: DTIC_ADA431591
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25DTIC ADA046860: General Theory Of Optimal Error Algorithms And Analytic Complexity. Part A. General Information Model.
By Defense Technical Information Center
This is the first of a series of papers constructing an information based general theory of optimal errors and analytic computational complexity. Among the applications are such traditionally diverse areas as approximation, boundary-value problems, quadrature, and nonlinear equations in a finite or infinite dimensional space. Traditionally algorithms are often derived by ad hoc criteria. The information based theory rationalizes the synthesis of algorithms by showing how to construct algorithms which minimize or nearly minimize the error. For certain classes of problems it shows how to construct algorithms (linear optimal error algorithms) which enjoy essentially optimal complexity with respect to all possible algorithms. The existence of strongly non-computable problems is demonstrated. In contrast with the gap theorem of recursively computable functions it is shown that every monotonic real function is the complexity of some problem.
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- Title: ➤ DTIC ADA046860: General Theory Of Optimal Error Algorithms And Analytic Complexity. Part A. General Information Model.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA046860: General Theory Of Optimal Error Algorithms And Analytic Complexity. Part A. General Information Model.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Traub,J F - CARNEGIE-MELLON UNIV PITTSBURGH PA DEPT OF COMPUTER SCIENCE - *COMPUTATIONS - *COMPUTER PROGRAMMING - *ANALYTIC FUNCTIONS - ALGORITHMS - LINEAR SYSTEMS - SOLUTIONS(GENERAL) - APPROXIMATION(MATHEMATICS) - NUMERICAL INTEGRATION - BOUNDARY VALUE PROBLEMS - OPERATORS(MATHEMATICS) - NONLINEAR ALGEBRAIC EQUATIONS - HILBERT SPACE - MATRIX THEORY
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- Internet Archive ID: DTIC_ADA046860
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26DTIC ADA443743: Quantum Algorithms And Complexity For Certain Continuous And Related Discrete Problems
By Defense Technical Information Center
This thesis contains an analysis of two computational problems. The first problem is discrete quantum Boolean summation, which is a building block of quantum algorithms for many continuous problems, such as integration, approximation, differential equations, and path integration. The second problem is continuous multivariate Feynman-Kac path integration, which is a special case of path integration. The quantum Boolean summation problem can be solved by the quantum summation (QS) algorithm of Brassard, Hoyer, Mosca and Tapp, which approximates the arithmetic mean of a Boolean function. The author improves the error bound of Brassard et al. for the worst-probabilistic setting. The error bound is sharp. He also presents new sharp error bounds in the average-probabilistic and worst-average settings. His average-probabilistic error bounds prove the optimality of the QS algorithm for a certain choice of its parameters. The study of the worst-average error shows that the QS algorithm is not optimal in this setting; one needs to use a certain number of repetitions to regain its optimality. The multivariate Feynman-Kac path integration problem for smooth multivariate functions suffers from the provable curse of dimensionality in the worst-case deterministic setting (i.e., the minimal number of function evaluations needed to compute an approximation depends exponentially on the number of variables). He shows that, in both the randomized and quantum settings, the curse of dimensionality is vanquished (i.e., the minimal number of function evaluations and/or quantum queries required to compute an approximation depends only polynomially on the reciprocal of the desired accuracy and has a bound independent of the number of variables). The exponents of these polynomials are 2 in the randomized setting and 1 in the quantum setting. These exponents can be lowered at the expense of the dependence on the number of variables.
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- Title: ➤ DTIC ADA443743: Quantum Algorithms And Complexity For Certain Continuous And Related Discrete Problems
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA443743: Quantum Algorithms And Complexity For Certain Continuous And Related Discrete Problems” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Kwas, Marek - COLUMBIA UNIV NEW YORK GRADUATE SCHOOL OF ARTS AND SCIENCES - *COMPUTATIONS - *QUANTUM THEORY - *PROBABILITY - *NUMERICAL INTEGRATION - *BOOLEAN ALGEBRA - ALGORITHMS - POLYNOMIALS - DETERMINANTS(MATHEMATICS) - DIFFERENTIAL EQUATIONS - RANDOM VARIABLES - ACCURACY - THESES - APPROXIMATION(MATHEMATICS)
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27DTIC ADA1022250: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA1022250: Research In Complexity Theory And Combinatorial Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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28Linear Network Code For Erasure Broadcast Channel With Feedback: Complexity And Algorithms
By Chi Wan Sung, Linyu Huang, Ho Yuet Kwan and Kenneth W. Shum
This paper investigates the construction of linear network codes for broadcasting a set of data packets to a number of users. The links from the source to the users are modeled as independent erasure channels. Users are allowed to inform the source node whether a packet is received correctly via feedback channels. In order to minimize the number of packet transmissions until all users have received all packets successfully, it is necessary that a data packet, if successfully received by a user, can increase the dimension of the vector space spanned by the encoding vectors he or she has received by one. Such an encoding vector is called innovative. We prove that innovative linear network code is uniformly optimal in minimizing user download delay. When the finite field size is strictly smaller than the number of users, the problem of determining the existence of innovative vectors is proven to be NP-complete. When the field size is larger than or equal to the number of users, innovative vectors always exist and random linear network code (RLNC) is able to find an innovative vector with high probability. While RLNC is optimal in terms of completion time, it has high decoding complexity due to the need of solving a system of linear equations. To reduce decoding time, we propose the use of sparse linear network code, since the sparsity property of encoding vectors can be exploited when solving systems of linear equations. Generating a sparsest encoding vector with large finite field size, however, is shown to be NP-hard. An approximation algorithm that guarantee the Hamming weight of a generated encoding vector to be smaller than a certain factor of the optimal value is constructed. Our simulation results show that our proposed methods have excellent performance in completion time and outperforms RLNC in terms of decoding time.
“Linear Network Code For Erasure Broadcast Channel With Feedback: Complexity And Algorithms” Metadata:
- Title: ➤ Linear Network Code For Erasure Broadcast Channel With Feedback: Complexity And Algorithms
- Authors: Chi Wan SungLinyu HuangHo Yuet KwanKenneth W. Shum
- Language: English
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- Internet Archive ID: arxiv-1205.5324
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29On Cooperative Patrolling: Optimal Trajectories, Complexity Analysis, And Approximation Algorithms
By Fabio Pasqualetti, Antonio Franchi and Francesco Bullo
The subject of this work is the patrolling of an environment with the aid of a team of autonomous agents. We consider both the design of open-loop trajectories with optimal properties, and of distributed control laws converging to optimal trajectories. As performance criteria, the refresh time and the latency are considered, i.e., respectively, time gap between any two visits of the same region, and the time necessary to inform every agent about an event occurred in the environment. We associate a graph with the environment, and we study separately the case of a chain, tree, and cyclic graph. For the case of chain graph, we first describe a minimum refresh time and latency team trajectory, and we propose a polynomial time algorithm for its computation. Then, we describe a distributed procedure that steers the robots toward an optimal trajectory. For the case of tree graph, a polynomial time algorithm is developed for the minimum refresh time problem, under the technical assumption of a constant number of robots involved in the patrolling task. Finally, we show that the design of a minimum refresh time trajectory for a cyclic graph is NP-hard, and we develop a constant factor approximation algorithm.
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- Title: ➤ On Cooperative Patrolling: Optimal Trajectories, Complexity Analysis, And Approximation Algorithms
- Authors: Fabio PasqualettiAntonio FranchiFrancesco Bullo
- Language: English
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- Internet Archive ID: arxiv-1101.3973
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30Polynomial Evaluation Over Finite Fields: New Algorithms And Complexity Bounds
By Michele Elia, Joachim Rosenthal and Davide Schipani
An efficient evaluation method is described for polynomials in finite fields. Its complexity is shown to be lower than that of standard techniques when the degree of the polynomial is large enough. Applications to the syndrome computation in the decoding of Reed-Solomon codes are highlighted.
“Polynomial Evaluation Over Finite Fields: New Algorithms And Complexity Bounds” Metadata:
- Title: ➤ Polynomial Evaluation Over Finite Fields: New Algorithms And Complexity Bounds
- Authors: Michele EliaJoachim RosenthalDavide Schipani
- Language: English
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- Internet Archive ID: arxiv-1102.4772
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31DTIC ADA1022256: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Title: ➤ DTIC ADA1022256: Research In Complexity Theory And Combinatorial Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA1022256: Research In Complexity Theory And Combinatorial Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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32DTIC ADA102225: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Title: ➤ DTIC ADA102225: Research In Complexity Theory And Combinatorial Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA102225: Research In Complexity Theory And Combinatorial Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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33Complexity Issues And Randomization Strategies In Frank-Wolfe Algorithms For Machine Learning
By Emanuele Frandi, Ricardo Nanculef and Johan Suykens
Frank-Wolfe algorithms for convex minimization have recently gained considerable attention from the Optimization and Machine Learning communities, as their properties make them a suitable choice in a variety of applications. However, as each iteration requires to optimize a linear model, a clever implementation is crucial to make such algorithms viable on large-scale datasets. For this purpose, approximation strategies based on a random sampling have been proposed by several researchers. In this work, we perform an experimental study on the effectiveness of these techniques, analyze possible alternatives and provide some guidelines based on our results.
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- Title: ➤ Complexity Issues And Randomization Strategies In Frank-Wolfe Algorithms For Machine Learning
- Authors: Emanuele FrandiRicardo NanculefJohan Suykens
“Complexity Issues And Randomization Strategies In Frank-Wolfe Algorithms For Machine Learning” Subjects and Themes:
- Subjects: ➤ Statistics - Mathematics - Computing Research Repository - Numerical Analysis - Machine Learning - Learning - Optimization and Control
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- Internet Archive ID: arxiv-1410.4062
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34On Algorithms And Complexity For Sets With Cardinality Constraints
By Bruno Marnette, Viktor Kuncak and Martin Rinard
Typestate systems ensure many desirable properties of imperative programs, including initialization of object fields and correct use of stateful library interfaces. Abstract sets with cardinality constraints naturally generalize typestate properties: relationships between the typestates of objects can be expressed as subset and disjointness relations on sets, and elements of sets can be represented as sets of cardinality one. Motivated by these applications, this paper presents new algorithms and new complexity results for constraints on sets and their cardinalities. We study several classes of constraints and demonstrate a trade-off between their expressive power and their complexity. Our first result concerns a quantifier-free fragment of Boolean Algebra with Presburger Arithmetic. We give a nondeterministic polynomial-time algorithm for reducing the satisfiability of sets with symbolic cardinalities to constraints on constant cardinalities, and give a polynomial-space algorithm for the resulting problem. In a quest for more efficient fragments, we identify several subclasses of sets with cardinality constraints whose satisfiability is NP-hard. Finally, we identify a class of constraints that has polynomial-time satisfiability and entailment problems and can serve as a foundation for efficient program analysis.
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- Title: ➤ On Algorithms And Complexity For Sets With Cardinality Constraints
- Authors: Bruno MarnetteViktor KuncakMartin Rinard
- Language: English
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- Internet Archive ID: arxiv-cs0508123
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35Path Computation In Multi-layer Networks: Complexity And Algorithms
By Mohamed Lamine Lamali, Nasreddine Fergani, Johanne Cohen and Hélia Pouyllau
Carrier-grade networks comprise several layers where different protocols coexist. Nowadays, most of these networks have different control planes to manage routing on different layers, leading to a suboptimal use of the network resources and additional operational costs. However, some routers are able to encapsulate, decapsulate and convert protocols and act as a liaison between these layers. A unified control plane would be useful to optimize the use of the network resources and automate the routing configurations. Software-Defined Networking (SDN) based architectures, such as OpenFlow, offer a chance to design such a control plane. One of the most important problems to deal with in this design is the path computation process. Classical path computation algorithms cannot resolve the problem as they do not take into account encapsulations and conversions of protocols. In this paper, we propose algorithms to solve this problem and study several cases: Path computation without bandwidth constraint, under bandwidth constraint and under other Quality of Service constraints. We study the complexity and the scalability of our algorithms and evaluate their performances on real topologies. The results show that they outperform the previous ones proposed in the literature.
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- Title: ➤ Path Computation In Multi-layer Networks: Complexity And Algorithms
- Authors: Mohamed Lamine LamaliNasreddine FerganiJohanne CohenHélia Pouyllau
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- Internet Archive ID: arxiv-1601.01786
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36New Complexity Results And Algorithms For The Minimum Tollbooth Problem
By Soumya Basu, Thanasis Lianeas and Evdokia Nikolova
The inefficiency of the Wardrop equilibrium of nonatomic routing games can be eliminated by placing tolls on the edges of a network so that the socially optimal flow is induced as an equilibrium flow. A solution where the minimum number of edges are tolled may be preferable over others due to its ease of implementation in real networks. In this paper we consider the minimum tollbooth (MINTB) problem, which seeks social optimum inducing tolls with minimum support. We prove for single commodity networks with linear latencies that the problem is NP-hard to approximate within a factor of $1.1377$ through a reduction from the minimum vertex cover problem. Insights from network design motivate us to formulate a new variation of the problem where, in addition to placing tolls, it is allowed to remove unused edges by the social optimum. We prove that this new problem remains NP-hard even for single commodity networks with linear latencies, using a reduction from the partition problem. On the positive side, we give the first exact polynomial solution to the MINTB problem in an important class of graphs---series-parallel graphs. Our algorithm solves MINTB by first tabulating the candidate solutions for subgraphs of the series-parallel network and then combining them optimally.
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- Title: ➤ New Complexity Results And Algorithms For The Minimum Tollbooth Problem
- Authors: Soumya BasuThanasis LianeasEvdokia Nikolova
- Language: English
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- Internet Archive ID: arxiv-1509.07260
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37Algorithms : Their Complexity And Efficiency
By Kronsjö, Lydia I
The inefficiency of the Wardrop equilibrium of nonatomic routing games can be eliminated by placing tolls on the edges of a network so that the socially optimal flow is induced as an equilibrium flow. A solution where the minimum number of edges are tolled may be preferable over others due to its ease of implementation in real networks. In this paper we consider the minimum tollbooth (MINTB) problem, which seeks social optimum inducing tolls with minimum support. We prove for single commodity networks with linear latencies that the problem is NP-hard to approximate within a factor of $1.1377$ through a reduction from the minimum vertex cover problem. Insights from network design motivate us to formulate a new variation of the problem where, in addition to placing tolls, it is allowed to remove unused edges by the social optimum. We prove that this new problem remains NP-hard even for single commodity networks with linear latencies, using a reduction from the partition problem. On the positive side, we give the first exact polynomial solution to the MINTB problem in an important class of graphs---series-parallel graphs. Our algorithm solves MINTB by first tabulating the candidate solutions for subgraphs of the series-parallel network and then combining them optimally.
“Algorithms : Their Complexity And Efficiency” Metadata:
- Title: ➤ Algorithms : Their Complexity And Efficiency
- Author: Kronsjö, Lydia I
- Language: English
“Algorithms : Their Complexity And Efficiency” Subjects and Themes:
- Subjects: ➤ Computer programming - Computer algorithms - Numerical analysis -- Data processing - Computational complexity
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- Internet Archive ID: algorithmstheirc0000kron_u4l8
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38Can Everything Be Computed? - On The Solvability Complexity Index And Towers Of Algorithms
By Jonathan Ben-Artzi, Anders C. Hansen, Olavi Nevanlinna and Markus Seidel
This paper establishes some of the fundamental barriers in the theory of computations and finally settles the long standing computational spectral problem. Due to these barriers, there are problems at the heart of computational theory that do not fit into classical complexity theory. Many computational problems can be solved as follows: a sequence of approximations is created by an algorithm, and the solution to the problem is the limit of this sequence. However, as we demonstrate, for several basic problems in computations (computing spectra of operators, inverse problems or roots of polynomials using rational maps) such a procedure based on one limit is impossible. Yet, one can compute solutions to these problems, but only by using several limits. This may come as a surprise, however, this touches onto the boundaries of computational mathematics. To analyze this phenomenon we use the Solvability Complexity Index (SCI). The SCI is the smallest number of limits needed in the computation. We show that the SCI of spectra and essential spectra of operators is equal to three, and that the SCI of spectra of self-adjoint operators is equal to two, thus providing the lower bound barriers and the first algorithms to compute such spectra in two and three limits. This finally settles the long standing computational spectral problem. In addition, we provide bounds for the SCI of spectra of classes of Schr\"{o}dinger operators, thus we affirmatively answer the long standing question on whether or not these spectra can actually be computed. The SCI yields a framework for understanding barriers in computations. It has a direct link to the Arithmetical Hierarchy, and we demonstrate how the impossibility result of McMullen on polynomial root finding with rational maps in one limit and the results of Doyle and McMullen on solving the quintic in several limits can be put in the SCI framework.
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- Title: ➤ Can Everything Be Computed? - On The Solvability Complexity Index And Towers Of Algorithms
- Authors: Jonathan Ben-ArtziAnders C. HansenOlavi NevanlinnaMarkus Seidel
- Language: English
“Can Everything Be Computed? - On The Solvability Complexity Index And Towers Of Algorithms” Subjects and Themes:
- Subjects: ➤ Computational Complexity - Mathematical Physics - Logic - Spectral Theory - Computing Research Repository - Mathematics - Numerical Analysis
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- Internet Archive ID: arxiv-1508.03280
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39Convergence Radius And Sample Complexity Of ITKM Algorithms For Dictionary Learning
By Karin Schnass
In this work we show that iterative thresholding and K-means (ITKM) algorithms can recover a generating dictionary with K atoms from noisy $S$ sparse signals up to an error $\tilde \varepsilon$ as long as the initialisation is within a convergence radius, that is up to a $\log K$ factor inversely proportional to the dynamic range of the signals, and the sample size is proportional to $K \log K \tilde \varepsilon^{-2}$. The results are valid for arbitrary target errors if the sparsity level is of the order of the square root of the signal dimension $d$ and for target errors down to $K^{-\ell}$ if $S$ scales as $S \leq d/(\ell \log K)$.
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- Author: Karin Schnass
- Language: English
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- Subjects: Learning - Computing Research Repository - Information Theory - Mathematics
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- Internet Archive ID: arxiv-1503.07027
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40DTIC ADA1022255: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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41Algorithms And Complexity : 4th Italian Conference, CIAC 2000, Rome, Italy, March 1-3, 2000 : Proceedings
By Italian Conference on Algorithms and Complexity (4th : 2000 : Rome, Italy), Bongiovanni, Giancarlo, Gambosi, G. (Giorgio), 1955- and Petreschi, Rossella, 1950-
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Authors: ➤ Italian Conference on Algorithms and Complexity (4th : 2000 : Rome, Italy)Bongiovanni, GiancarloGambosi, G. (Giorgio), 1955-Petreschi, Rossella, 1950-
- Language: English
“Algorithms And Complexity : 4th Italian Conference, CIAC 2000, Rome, Italy, March 1-3, 2000 : Proceedings” Subjects and Themes:
- Subjects: Algorithms - Computational complexity
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- Internet Archive ID: springer_10.1007-3-540-46521-9
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42Representation Techniques For Relational Languages And The Worst Case Asymptotical Time Complexity Behaviour Of The Related Algorithms.
By Futaci, Suha.
ADA121995
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- Author: Futaci, Suha.
- Language: en_US,eng
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43Counting, Sampling And Integrating : Algorithms And Complexity
By Jerrum, Mark, 1955-
ADA121995
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- Title: ➤ Counting, Sampling And Integrating : Algorithms And Complexity
- Author: Jerrum, Mark, 1955-
- Language: English
“Counting, Sampling And Integrating : Algorithms And Complexity” Subjects and Themes:
- Subjects: ➤ Combinatorial enumeration problems - Algorithms - Computational complexity
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- Internet Archive ID: countingsampling0000jerr
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44#111 - Richard Karp: Algorithms And Computational Complexity
By Lex Fridman Podcast
Richard Karp is a professor at Berkeley and one of the most important figures in the history of theoretical computer science. In 1985, he received the Turing Award for his research in the theory of algorithms, including the development of the Edmonds-Karp algorithm for solving the maximum flow problem on networks, Hopcroft-Karp algorithm for finding maximum cardinality matchings in bipartite graphs, and his landmark paper in complexity theory called \"Reducibility Among Combinatorial Problems\", in which he proved 21 problems to be NP-complete. This paper was probably the most important catalyst in the explosion of interest in the study of NP-completeness
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45DTIC ADA1022253: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Title: ➤ DTIC ADA1022253: Research In Complexity Theory And Combinatorial Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA1022253: Research In Complexity Theory And Combinatorial Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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46Low Complexity Coefficient Selection Algorithms For Compute-and-Forward
By Qinhui Huang and Alister Burr
Compute-and-Forward (C&F) has been proposed as an efficient strategy to reduce the backhaul load for the distributed antenna systems. Finding the optimal coefficients in C&F has commonly been treated as a shortest vector problem (SVP), which is N-P hard. The point of our work and of Sahraei's recent work is that the C&F coefficient problem can be much simpler. Due to the special structure of C&F, some low polynomial complexity optimal algorithms have recently been developed. However these methods can be applied to real valued channels and integer based lattices only. In this paper, we consider the complex valued channel with complex integer based lattices. For the first time, we propose a low polynomial complexity algorithm to find the optimal solution for the complex scenario. Then we propose a simple linear search algorithm which is conceptually suboptimal, however numerical results show that the performance degradation is negligible compared to the optimal method. Both algorithms are suitable for lattices over any algebraic integers, and significantly outperform the lattice reduction algorithm. The complexity of both algorithms are investigated both theoretically and numerically. The results show that our proposed algorithms achieve better performance-complexity trade-offs compared to the existing algorithms.
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- Title: ➤ Low Complexity Coefficient Selection Algorithms For Compute-and-Forward
- Authors: Qinhui HuangAlister Burr
“Low Complexity Coefficient Selection Algorithms For Compute-and-Forward” Subjects and Themes:
- Subjects: Information Theory - Computing Research Repository - Mathematics
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- Internet Archive ID: arxiv-1704.05007
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47Complexity Of Sequential And Parallel Numerical Algorithms [proceedings]
By Symposium on Complexity of Sequential and Parallel Numerical Algorithms (1973 : Carnegie-Mellon University)
Compute-and-Forward (C&F) has been proposed as an efficient strategy to reduce the backhaul load for the distributed antenna systems. Finding the optimal coefficients in C&F has commonly been treated as a shortest vector problem (SVP), which is N-P hard. The point of our work and of Sahraei's recent work is that the C&F coefficient problem can be much simpler. Due to the special structure of C&F, some low polynomial complexity optimal algorithms have recently been developed. However these methods can be applied to real valued channels and integer based lattices only. In this paper, we consider the complex valued channel with complex integer based lattices. For the first time, we propose a low polynomial complexity algorithm to find the optimal solution for the complex scenario. Then we propose a simple linear search algorithm which is conceptually suboptimal, however numerical results show that the performance degradation is negligible compared to the optimal method. Both algorithms are suitable for lattices over any algebraic integers, and significantly outperform the lattice reduction algorithm. The complexity of both algorithms are investigated both theoretically and numerically. The results show that our proposed algorithms achieve better performance-complexity trade-offs compared to the existing algorithms.
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- Title: ➤ Complexity Of Sequential And Parallel Numerical Algorithms [proceedings]
- Author: ➤ Symposium on Complexity of Sequential and Parallel Numerical Algorithms (1973 : Carnegie-Mellon University)
- Language: English
“Complexity Of Sequential And Parallel Numerical Algorithms [proceedings]” Subjects and Themes:
- Subjects: Computer programming - Mathematics -- Data processing - Computer algorithms - Parallel processing (Electronic computers) - Sequential processing (Computer science)
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- Internet Archive ID: complexityofsequ0000symp
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48DTIC ADA081439: Annotated Bibliography And Brief History Of Optimal Algorithms And Analytic Complexity.
By Defense Technical Information Center
This is an annotated bibliography of over 300 papers and books on optimal algorithms and analytic complexity covering both the eastern European and the western literature. Each bibliographic item consists of a bibliographic reference, a set of keywords, and a short description. A brief history of the subject is also included. (Author)
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- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA081439: Annotated Bibliography And Brief History Of Optimal Algorithms And Analytic Complexity.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Traub,J F - CARNEGIE-MELLON UNIV PITTSBURGH PA DEPT OF COMPUTER SCIENCE - *FUNCTIONAL ANALYSIS - *ANALYTIC FUNCTIONS - ALGORITHMS - OPTIMIZATION - BIBLIOGRAPHIES - ABSTRACTS - APPROXIMATION(MATHEMATICS) - INDEX TERMS
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- Internet Archive ID: DTIC_ADA081439
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49DTIC ADA1022251: Research In Complexity Theory And Combinatorial Algorithms
By Defense Technical Information Center
Since October 1, 1979, research in Complexity Theory and Combinatorial Algorithms at the Department of Computer Science at the University of Illinois was supported by the Office of Naval Research. During this period of time, research work was carried out in the areas of Computational Complexity Theory, Scheduling Algorithms, Graph Algorithms, Dynamic Programming, and Fault- Tolerance Computing. We summarize here our accomplishments and our future plans, and we wish to request continued support for the period of October 1, 1980 - September 30, 1982 from ONR for research in these areas. Scheduling to meet deadlines -- The problem of scheduling jobs to meet their deadlines was studied. Given a set of jobs each of which is specified by three parameters, ready time, deadline, and computation time, we want to schedule them on a computer system so that, if possible, all deadlines will be met. Furthermore, if indeed all deadlines can be met, we want to know the possibility of completing the executing of each job so that there will be a 'slack time' between the time of completion and the deadline. In particular, the following model is used: There is a single processor in the computing system. Each job consists of an infinite stream of periodic and identical requests. A request is ready when it arrives and should be completed prior to the arrival of the next request of the same job. The execution of a job can be interrupted and be resumed later on.
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- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - Liu, C L - ILLINOIS UNIV AT URBANA DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *COMBINATORIAL ANALYSIS - *SCHEDULING - DATA PROCESSING - DYNAMIC PROGRAMMING - FAULT TOLERANT COMPUTING - FAULT TREE ANALYSIS - PARAMETRIC ANALYSIS - PROCESSING EQUIPMENT - SEQUENCES(MATHEMATICS) - THEOREMS
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50Algebraic Diagonals And Walks: Algorithms, Bounds, Complexity
By Alin Bostan, Louis Dumont and Bruno Salvy
The diagonal of a multivariate power series F is the univariate power series Diag(F) generated by the diagonal terms of F. Diagonals form an important class of power series; they occur frequently in number theory, theoretical physics and enumerative combinatorics. We study algorithmic questions related to diagonals in the case where F is the Taylor expansion of a bivariate rational function. It is classical that in this case Diag(F) is an algebraic function. We propose an algorithm that computes an annihilating polynomial for Diag(F). We give a precise bound on the size of this polynomial and show that generically, this polynomial is the minimal polynomial and that its size reaches the bound. The algorithm runs in time quasi-linear in this bound, which grows exponentially with the degree of the input rational function. We then address the related problem of enumerating directed lattice walks. The insight given by our study leads to a new method for expanding the generating power series of bridges, excursions and meanders. We show that their first N terms can be computed in quasi-linear complexity in N, without first computing a very large polynomial equation.
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- Title: ➤ Algebraic Diagonals And Walks: Algorithms, Bounds, Complexity
- Authors: Alin BostanLouis DumontBruno Salvy
“Algebraic Diagonals And Walks: Algorithms, Bounds, Complexity” Subjects and Themes:
- Subjects: Symbolic Computation - Computing Research Repository
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- Internet Archive ID: arxiv-1510.04526
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1Algorithms and complexity
By Symposium on New Directions and Recent Results in Algorithms and Complexity Carnegie-Mellon University 1976.

“Algorithms and complexity” Metadata:
- Title: Algorithms and complexity
- Author: ➤ Symposium on New Directions and Recent Results in Algorithms and Complexity Carnegie-Mellon University 1976.
- Language: English
- Number of Pages: Median: 523
- Publisher: Academic Press
- Publish Date: 1976
- Publish Location: New York
“Algorithms and complexity” Subjects and Themes:
- Subjects: ➤ Computational complexity - Computer programming - Congresses - Data processing - Mathematics - Informatique - Complexite de calcul (Informatique) - Congres - Kongress - Algorithmus - Programmation (Informatique) - Mathematiques - Programmierung - Komplexitat - Electronic digital computers, programming - Mathematics, data processing
Edition Identifiers:
- The Open Library ID: OL4903342M
- Online Computer Library Center (OCLC) ID: 2543035
- Library of Congress Control Number (LCCN): 76049046
- All ISBNs: 012697540X - 9780126975406
Access and General Info:
- First Year Published: 1976
- Is Full Text Available: Yes
- Is The Book Public: No
- Access Status: Borrowable
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