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Scheduling Algorithms by Peter Brucker
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1DTIC ADA1037967: Parallel Scheduling Algorithms.
By Defense Technical Information Center
We obtain fast parallel algorithms for several scheduling problems. Some of the problems considered are: scheduling to minimize the number of tardy jobs; job sequencing with deadlines; scheduling to minimize earliness and tardiness penalties; channel assignment; and minimizing the mean finish time. The shared memory model of parallel computers is used. (Author)
“DTIC ADA1037967: Parallel Scheduling Algorithms.” Metadata:
- Title: ➤ DTIC ADA1037967: Parallel Scheduling Algorithms.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA1037967: Parallel Scheduling Algorithms.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Dekel, Eliezer - MINNESOTA UNIV MINNEAPOLIS DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *PARALLEL PROCESSING - *SCHEDULING - *COMPUTER APPLICATIONS - MATHEMATICAL LOGIC - COMPUTER ARCHITECTURE - APPROXIMATION(MATHEMATICS) - MULTIPROCESSORS - STATISTICAL ANALYSIS - MEAN - BOOLEAN ALGEBRA - FAULT TREE ANALYSIS
Edition Identifiers:
- Internet Archive ID: DTIC_ADA1037967
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The book is available for download in "texts" format, the size of the file-s is: 19.66 Mbs, the file-s for this book were downloaded 42 times, the file-s went public at Wed Apr 01 2020.
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2Exploiting Channel Memory For Multi-User Wireless Scheduling Without Channel Measurement: Capacity Regions And Algorithms
By Chih-ping Li and Michael J. Neely
We study the fundamental network capacity of a multi-user wireless downlink under two assumptions: (1) Channels are not explicitly measured and thus instantaneous states are unknown, (2) Channels are modeled as ON/OFF Markov chains. This is an important network model to explore because channel probing may be costly or infeasible in some contexts. In this case, we can use channel memory with ACK/NACK feedback from previous transmissions to improve network throughput. Computing in closed form the capacity region of this network is difficult because it involves solving a high dimension partially observed Markov decision problem. Instead, in this paper we construct an inner and outer bound on the capacity region, showing that the bound is tight when the number of users is large and the traffic is symmetric. For the case of heterogeneous traffic and any number of users, we propose a simple queue-dependent policy that can stabilize the network with any data rates strictly within the inner capacity bound. The stability analysis uses a novel frame-based Lyapunov drift argument. The outer-bound analysis uses stochastic coupling and state aggregation to bound the performance of a restless bandit problem using a related multi-armed bandit system. Our results are useful in cognitive radio networks, opportunistic scheduling with delayed/uncertain channel state information, and restless bandit problems.
“Exploiting Channel Memory For Multi-User Wireless Scheduling Without Channel Measurement: Capacity Regions And Algorithms” Metadata:
- Title: ➤ Exploiting Channel Memory For Multi-User Wireless Scheduling Without Channel Measurement: Capacity Regions And Algorithms
- Authors: Chih-ping LiMichael J. Neely
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-1003.2675
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3Experimental Analysis Of Algorithms For Coflow Scheduling
By Zhen Qiu, Cliff Stein and Yuan Zhong
Modern data centers face new scheduling challenges in optimizing job-level performance objectives, where a significant challenge is the scheduling of highly parallel data flows with a common performance goal (e.g., the shuffle operations in MapReduce applications). Chowdhury and Stoica introduced the coflow abstraction to capture these parallel communication patterns, and Chowdhury et al. proposed effective heuristics to schedule coflows efficiently. In our previous paper, we considered the strongly NP-hard problem of minimizing the total weighted completion time of coflows with release dates, and developed the first polynomial-time scheduling algorithms with O(1)-approximation ratios. In this paper, we carry out a comprehensive experimental analysis on a Facebook trace and extensive simulated instances to evaluate the practical performance of several algorithms for coflow scheduling, including the approximation algorithms developed in our previous paper. Our experiments suggest that simple algorithms provide effective approximations of the optimal, and that the performance of our approximation algorithms is relatively robust, near optimal, and always among the best compared with the other algorithms, in both the offline and online settings.
“Experimental Analysis Of Algorithms For Coflow Scheduling” Metadata:
- Title: ➤ Experimental Analysis Of Algorithms For Coflow Scheduling
- Authors: Zhen QiuCliff SteinYuan Zhong
“Experimental Analysis Of Algorithms For Coflow Scheduling” Subjects and Themes:
- Subjects: ➤ Networking and Internet Architecture - Data Structures and Algorithms - Computing Research Repository
Edition Identifiers:
- Internet Archive ID: arxiv-1603.07981
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The book is available for download in "texts" format, the size of the file-s is: 0.90 Mbs, the file-s for this book were downloaded 19 times, the file-s went public at Fri Jun 29 2018.
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4DTIC ADA492118: Model Justified Search Algorithms For Scheduling Under Uncertainty
By Defense Technical Information Center
We have identified clear trade-offs in algorithm design for the scheduling under uncertainty problem that relate to the sources of the uncertainty. We also identified plateaus as a significant barrier to superb performance of local search on scheduling and have studied several canonical discrete optimization problems to discover and model the nature of plateaus. From this, we have developed lower and upper bound predictive models of plateau size in a significant optimization problem: MAXSAT. We also develop new theoretical results on the nature of plateaus in Elementary Landscapes.
“DTIC ADA492118: Model Justified Search Algorithms For Scheduling Under Uncertainty” Metadata:
- Title: ➤ DTIC ADA492118: Model Justified Search Algorithms For Scheduling Under Uncertainty
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA492118: Model Justified Search Algorithms For Scheduling Under Uncertainty” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Howe, Adele - COLORADO STATE UNIV FORT COLLINS DEPT OF COMPUTER SCIENCE - *ALGORITHMS - PLATEAUS - SCHEDULING - TRADE OFF ANALYSIS - UNCERTAINTY - OPTIMIZATION
Edition Identifiers:
- Internet Archive ID: DTIC_ADA492118
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The book is available for download in "texts" format, the size of the file-s is: 21.70 Mbs, the file-s for this book were downloaded 42 times, the file-s went public at Fri Jun 29 2018.
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5NASA Technical Reports Server (NTRS) 19950020265: Design Tool For Multiprocessor Scheduling And Evaluation Of Iterative Dataflow Algorithms
By NASA Technical Reports Server (NTRS)
A graph-theoretic design process and software tool is defined for selecting a multiprocessing scheduling solution for a class of computational problems. The problems of interest are those that can be described with a dataflow graph and are intended to be executed repetitively on a set of identical processors. Typical applications include signal processing and control law problems. Graph-search algorithms and analysis techniques are introduced and shown to effectively determine performance bounds, scheduling constraints, and resource requirements. The software tool applies the design process to a given problem and includes performance optimization through the inclusion of additional precedence constraints among the schedulable tasks.
“NASA Technical Reports Server (NTRS) 19950020265: Design Tool For Multiprocessor Scheduling And Evaluation Of Iterative Dataflow Algorithms” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19950020265: Design Tool For Multiprocessor Scheduling And Evaluation Of Iterative Dataflow Algorithms
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19950020265: Design Tool For Multiprocessor Scheduling And Evaluation Of Iterative Dataflow Algorithms” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ALGORITHMS - APPLICATIONS PROGRAMS (COMPUTERS) - DATA FLOW ANALYSIS - DIGITAL SYSTEMS - MULTIPROCESSING (COMPUTERS) - PETRI NETS - SCHEDULING - SIGNAL PROCESSING - COMPUTER AIDED DESIGN - CONTROL THEORY - GRAPH THEORY - MATHEMATICAL MODELS - REAL TIME OPERATION - Jones, Robert L., III
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19950020265
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6Optimization Algorithms In School Scheduling Programs: Study
A graph-theoretic design process and software tool is defined for selecting a multiprocessing scheduling solution for a class of computational problems. The problems of interest are those that can be described with a dataflow graph and are intended to be executed repetitively on a set of identical processors. Typical applications include signal processing and control law problems. Graph-search algorithms and analysis techniques are introduced and shown to effectively determine performance bounds, scheduling constraints, and resource requirements. The software tool applies the design process to a given problem and includes performance optimization through the inclusion of additional precedence constraints among the schedulable tasks.
“Optimization Algorithms In School Scheduling Programs: Study” Metadata:
- Title: ➤ Optimization Algorithms In School Scheduling Programs: Study
“Optimization Algorithms In School Scheduling Programs: Study” Subjects and Themes:
- Subjects: manualzilla - manuals
Edition Identifiers:
- Internet Archive ID: manualzilla-id-5765772
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The book is available for download in "texts" format, the size of the file-s is: 8.94 Mbs, the file-s for this book were downloaded 160 times, the file-s went public at Sat Mar 06 2021.
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7DTIC ADA459559: Rollout Algorithms For Stochastic Scheduling Problems
By Defense Technical Information Center
Stochastic scheduling problems are difficult stochastic control problems with combinatorial decision spaces. In this paper we focus on a class of stochastic scheduling problems, the quiz problem and its variations. We discuss the use of heuristics for their solution, and we propose rollout algorithms based on these heuristics, which approximate the stochastic dynamic programming algorithm. We show how the rollout algorithms can be implemented efficiently, and we delineate circumstances under which they are guaranteed to perform better than the heuristics on which they are based. We also show computational results which suggest that the performance of the rollout policies is near-optimal, and is substantially better than the performance of their underlying heuristics.
“DTIC ADA459559: Rollout Algorithms For Stochastic Scheduling Problems” Metadata:
- Title: ➤ DTIC ADA459559: Rollout Algorithms For Stochastic Scheduling Problems
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA459559: Rollout Algorithms For Stochastic Scheduling Problems” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Bertsekas, D P - MASSACHUSETTS INST OF TECH CAMBRIDGE LAB FOR INFORMATION AND DECISION SYSTEMS - *ALGORITHMS - *HEURISTIC METHODS - *DYNAMIC PROGRAMMING - *STOCHASTIC CONTROL - COMPUTATIONS - DECISION MAKING - COMBINATORIAL ANALYSIS - MATHEMATICAL PROGRAMMING - SCHEDULING
Edition Identifiers:
- Internet Archive ID: DTIC_ADA459559
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The book is available for download in "texts" format, the size of the file-s is: 20.66 Mbs, the file-s for this book were downloaded 60 times, the file-s went public at Thu Jun 07 2018.
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8DTIC ADA105881: Exact And Approximation Algorithms For A Scheduling Problem.
By Defense Technical Information Center
This paper discusses problems that arose in calendaring cases for an appellate court. The first problem is to distribute cases among panels of judges so as to equalize work loads. We give a worst case analysis of a heuristic for this NP-complete problem. For a given distribution denote by z the heaviest work load. We wish to minimize z. The ratio of the heuristic value z-bar to that of the true optimum z* is shown to be z-bar/z* or = (k + 3)/(k + 2) where all the case weights in (0, (1/k)z*), generalizing a result of Graham on multiprocessor scheduling. Under a restrictive assumption on the case weights, some generalizations of this scheduling problem are solved. Characterizations for feasible calendars and polynomial algorithms for finding these feasible solutions are given. Algorithms are given for choosing an optimal subset of the backlogged cases that can be calendared. (Author)
“DTIC ADA105881: Exact And Approximation Algorithms For A Scheduling Problem.” Metadata:
- Title: ➤ DTIC ADA105881: Exact And Approximation Algorithms For A Scheduling Problem.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA105881: Exact And Approximation Algorithms For A Scheduling Problem.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Dobson,Gregory - STANFORD UNIV CA SYSTEMS OPTIMIZATION LAB - *ALGORITHMS - *SCHEDULING - *APPROXIMATION(MATHEMATICS) - COMPUTER COMMUNICATIONS - POLYNOMIALS - HEURISTIC METHODS - MULTIPROCESSORS - COMBINATORIAL ANALYSIS - DISTRIBUTION FUNCTIONS - THEOREMS - MINIMAX TECHNIQUE
Edition Identifiers:
- Internet Archive ID: DTIC_ADA105881
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The book is available for download in "texts" format, the size of the file-s is: 21.67 Mbs, the file-s for this book were downloaded 63 times, the file-s went public at Fri Dec 22 2017.
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9Deadline Scheduling For Real-time Systems : EDF And Related Algorithms
This paper discusses problems that arose in calendaring cases for an appellate court. The first problem is to distribute cases among panels of judges so as to equalize work loads. We give a worst case analysis of a heuristic for this NP-complete problem. For a given distribution denote by z the heaviest work load. We wish to minimize z. The ratio of the heuristic value z-bar to that of the true optimum z* is shown to be z-bar/z* or = (k + 3)/(k + 2) where all the case weights in (0, (1/k)z*), generalizing a result of Graham on multiprocessor scheduling. Under a restrictive assumption on the case weights, some generalizations of this scheduling problem are solved. Characterizations for feasible calendars and polynomial algorithms for finding these feasible solutions are given. Algorithms are given for choosing an optimal subset of the backlogged cases that can be calendared. (Author)
“Deadline Scheduling For Real-time Systems : EDF And Related Algorithms” Metadata:
- Title: ➤ Deadline Scheduling For Real-time Systems : EDF And Related Algorithms
- Language: English
“Deadline Scheduling For Real-time Systems : EDF And Related Algorithms” Subjects and Themes:
- Subjects: Real-time data processing - Computer algorithms - Scheduling
Edition Identifiers:
- Internet Archive ID: deadlinescheduli0000unse
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The book is available for download in "texts" format, the size of the file-s is: 633.70 Mbs, the file-s for this book were downloaded 15 times, the file-s went public at Tue May 30 2023.
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10Comparative Analysis Of The Essential CPU Scheduling Algorithms
By Bulletin of Electrical Engineering and Informatics
CPU scheduling algorithms have a significant function in multiprogramming operating systems. When the CPU scheduling is effective a high rate of computation could be done correctly and also the system will maintain in a stable state. As well as, CPU scheduling algorithms are the main service in the operating systems that fulfill the maximum utilization of the CPU. This paper aims to compare the characteristics of the CPU scheduling algorithms towards which one is the best algorithm for gaining a higher CPU utilization. The comparison has been done between ten scheduling algorithms with presenting different parameters, such as performance, algorithm’s complexity, algorithm’s problem, average waiting times, algorithm’s advantages-disadvantages, allocation way, etc. The main purpose of the article is to analyze the CPU scheduler in such a way that suits the scheduling goals. However, knowing the algorithm type which is most suitable for a particular situation by showing its full properties.
“Comparative Analysis Of The Essential CPU Scheduling Algorithms” Metadata:
- Title: ➤ Comparative Analysis Of The Essential CPU Scheduling Algorithms
- Author: ➤ Bulletin of Electrical Engineering and Informatics
“Comparative Analysis Of The Essential CPU Scheduling Algorithms” Subjects and Themes:
- Subjects: Average waiting time - CPU scheduling - Non-preemptive - Operating systems - Preemptive
Edition Identifiers:
- Internet Archive ID: 10.11591eei.v10i5.2812
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11Optimal Rules And Algorithms For Some Parallel Processor Scheduling Problems
By Martin-Vega, Louis Anthony
CPU scheduling algorithms have a significant function in multiprogramming operating systems. When the CPU scheduling is effective a high rate of computation could be done correctly and also the system will maintain in a stable state. As well as, CPU scheduling algorithms are the main service in the operating systems that fulfill the maximum utilization of the CPU. This paper aims to compare the characteristics of the CPU scheduling algorithms towards which one is the best algorithm for gaining a higher CPU utilization. The comparison has been done between ten scheduling algorithms with presenting different parameters, such as performance, algorithm’s complexity, algorithm’s problem, average waiting times, algorithm’s advantages-disadvantages, allocation way, etc. The main purpose of the article is to analyze the CPU scheduler in such a way that suits the scheduling goals. However, knowing the algorithm type which is most suitable for a particular situation by showing its full properties.
“Optimal Rules And Algorithms For Some Parallel Processor Scheduling Problems” Metadata:
- Title: ➤ Optimal Rules And Algorithms For Some Parallel Processor Scheduling Problems
- Author: Martin-Vega, Louis Anthony
- Language: English
Edition Identifiers:
- Internet Archive ID: optimalrulesalgo00mart
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12DTIC ADA241225: Algorithms For Scheduling And Network Problems
By Defense Technical Information Center
In this thesis we develop algorithms for two basic classes of problems in combinatorial optimization: deterministic machine scheduling and network optimization. In the first part of the thesis we consider approximation algorithms for two basic scheduling environments: shop scheduling and parallel machine scheduling. We give approximation algorithms for shop scheduling that significantly improve upon the performance of previous algorithms. We then study on-line approximation algorithms for parallel machine scheduling. In the second part of the thesis we present several theoretical and practical results about parallel algorithms for network optimization problems.
“DTIC ADA241225: Algorithms For Scheduling And Network Problems” Metadata:
- Title: ➤ DTIC ADA241225: Algorithms For Scheduling And Network Problems
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA241225: Algorithms For Scheduling And Network Problems” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Wein, Joel M - MASSACHUSETTS INST OF TECH CAMBRIDGE LAB FOR COMPUTER SCIENCE - *ALGORITHMS - ENVIRONMENTS - NETWORKS - THESES - SHOPS(WORK AREAS) - SCHEDULING - APPROXIMATION(MATHEMATICS) - COMBINATORIAL ANALYSIS - ONLINE SYSTEMS - OPTIMIZATION - PARALLEL PROCESSING
Edition Identifiers:
- Internet Archive ID: DTIC_ADA241225
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13An Analysis Of Scheduling Algorithms In Multiprocessor Computing Systems
By Chen, Nai-Fung, 1945- and University of Illinois at Urbana-Champaign. Dept. of Computer Science
In this thesis we develop algorithms for two basic classes of problems in combinatorial optimization: deterministic machine scheduling and network optimization. In the first part of the thesis we consider approximation algorithms for two basic scheduling environments: shop scheduling and parallel machine scheduling. We give approximation algorithms for shop scheduling that significantly improve upon the performance of previous algorithms. We then study on-line approximation algorithms for parallel machine scheduling. In the second part of the thesis we present several theoretical and practical results about parallel algorithms for network optimization problems.
“An Analysis Of Scheduling Algorithms In Multiprocessor Computing Systems” Metadata:
- Title: ➤ An Analysis Of Scheduling Algorithms In Multiprocessor Computing Systems
- Authors: ➤ Chen, Nai-Fung, 1945-University of Illinois at Urbana-Champaign. Dept. of Computer Science
- Language: English
“An Analysis Of Scheduling Algorithms In Multiprocessor Computing Systems” Subjects and Themes:
- Subjects: Computer programming - Multiprocessors - Critical path analysis
Edition Identifiers:
- Internet Archive ID: analysisofschedu724chen
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14Lagrangian Duality Based Algorithms In Online Scheduling
By Nguyen Kim Thang
We consider Lagrangian duality based approaches to design and analyze algorithms for online energy-efficient scheduling. First, we present a primal-dual framework. Our approach makes use of the Lagrangian weak duality and convexity to derive dual programs for problems which could be formulated as convex assignment problems. The duals have intuitive structures as the ones in linear programming. The constraints of the duals explicitly indicate the online decisions and naturally lead to competitive algorithms. Second, we use a dual-fitting approach, which also based on the weak duality, to study problems which are unlikely to admit convex relaxations. Through the analysis, we show an interesting feature in which primal-dual gives idea for designing algorithms while the analysis is done by dual-fitting. We illustrate the advantages and the flexibility of the approaches through problems in different setting: from single machine to unrelated machine environments, from typical competitive analysis to the one with resource augmentation, from convex relaxations to non-convex relaxations.
“Lagrangian Duality Based Algorithms In Online Scheduling” Metadata:
- Title: ➤ Lagrangian Duality Based Algorithms In Online Scheduling
- Author: Nguyen Kim Thang
“Lagrangian Duality Based Algorithms In Online Scheduling” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: arxiv-1408.0965
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15Wireless Scheduling Algorithms In Complex Environments
By Helga Gudmundsdottir, Eyjólfur I Ásgeirsson, Marijke H. L. Bodlaender, Joseph T. Foley, Magnús M. Halldórsson and Ymir Vigfusson
Efficient spectrum use in wireless sensor networks through spatial reuse requires effective models of packet reception at the physical layer in the presence of interference. Despite recent progress in analytic and simulations research into worst-case behavior from interference effects, these efforts generally assume geometric path loss and isotropic transmission, assumptions which have not been borne out in experiments. Our paper aims to provide a methodology for grounding theoretical results into wireless interference in experimental reality. We develop a new framework for wireless algorithms in which distance-based path loss is replaced by an arbitrary gain matrix, typically obtained by measurements of received signal strength (RSS). Gain matrices allow for the modeling of complex environments, e.g., with obstacles and walls. We experimentally evaluate the framework in two indoors testbeds with 20 and 60 motes, and confirm superior predictive performance in packet reception rate for a gain matrix model over a geometric distance-based model. At the heart of our approach is a new parameter $\zeta$ called metricity which indicates how close the gain matrix is to a distance metric, effectively measuring the complexity of the environment. A powerful theoretical feature of this parameter is that all known SINR scheduling algorithms that work in general metric spaces carry over to arbitrary gain matrices and achieve equivalent performance guarantees in terms of $\zeta$ as previously obtained in terms of the path loss constant. Our experiments confirm the sensitivity of $\zeta$ to the nature of the environment. Finally, we show analytically and empirically how multiple channels can be leveraged to improve metricity and thereby performance. We believe our contributions will facilitate experimental validation for recent advances in algorithms for physical wireless interference models.
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- Authors: ➤ Helga GudmundsdottirEyjólfur I ÁsgeirssonMarijke H. L. BodlaenderJoseph T. FoleyMagnús M. HalldórssonYmir Vigfusson
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- Internet Archive ID: arxiv-1401.1723
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16Coflow Scheduling In Input-Queued Switches: Optimal Delay Scaling And Algorithms
By Qingkai Liang and Eytan Modiano
A coflow is a collection of parallel flows belonging to the same job. It has the all-or-nothing property: a coflow is not complete until the completion of all its constituent flows. In this paper, we focus on optimizing \emph{coflow-level delay}, i.e., the time to complete all the flows in a coflow, in the context of an $N\times N$ input-queued switch. In particular, we develop a throughput-optimal scheduling policy that achieves the best scaling of coflow-level delay as $N\rightarrow\infty$. We first derive lower bounds on the coflow-level delay that can be achieved by any scheduling policy. It is observed that these lower bounds critically depend on the variability of flow sizes. Then we analyze the coflow-level performance of some existing coflow-agnostic scheduling policies and show that none of them achieves provably optimal performance with respect to coflow-level delay. Finally, we propose the Coflow-Aware Batching (CAB) policy which achieves the optimal scaling of coflow-level delay under some mild assumptions.
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- Authors: Qingkai LiangEytan Modiano
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- Internet Archive ID: arxiv-1701.02419
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17A Survey Of The Algorithms Used For Traffic Light Scheduling Systems
Traffic congestion are among the most important issue that a country needs to confront due to increasing volume of vehicles around the world, particularly in the large urban areas. As a result, the requirement begins for modeling and improving traffic management procedures to improve the growing need. In order to address traffic problems in urban areas a smart traffic management method is the need of time. The solution in this paper is found through the dimensions of traffic mass on the roads. The core objective of this paper is to highlight latest techniques algorithm which has been used for scheduling traffic lights and a comparison based on achieved accuracy.
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18NASA Technical Reports Server (NTRS) 19920001837: Intelligent Perturbation Algorithms For Space Scheduling Optimization
By NASA Technical Reports Server (NTRS)
Intelligent perturbation algorithms for space scheduling optimization are presented in the form of the viewgraphs. The following subject areas are covered: optimization of planning, scheduling, and manifesting; searching a discrete configuration space; heuristic algorithms used for optimization; use of heuristic methods on a sample scheduling problem; intelligent perturbation algorithms are iterative refinement techniques; properties of a good iterative search operator; dispatching examples of intelligent perturbation algorithm and perturbation operator attributes; scheduling implementations using intelligent perturbation algorithms; major advances in scheduling capabilities; the prototype ISF (industrial Space Facility) experiment scheduler; optimized schedule (max revenue); multi-variable optimization; Space Station design reference mission scheduling; ISF-TDRSS command scheduling demonstration; and example task - communications check.
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- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19920001837: Intelligent Perturbation Algorithms For Space Scheduling Optimization” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ALGORITHMS - ARTIFICIAL INTELLIGENCE - HEURISTIC METHODS - OPTIMIZATION - PERTURBATION - SCHEDULES - SCHEDULING - APPLICATIONS PROGRAMS (COMPUTERS) - HUMAN-COMPUTER INTERFACE - MISSION PLANNING - PROTOTYPES - SPACE STATIONS - SPACEBORNE EXPERIMENTS - SPACECRAFT DESIGN - Kurtzman, Clifford R.
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- Internet Archive ID: NASA_NTRS_Archive_19920001837
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19Distributed Scheduling Algorithms For Crosspoint-Buffered Switches
By Shunyuan Ye, Yanming Shen and Shivendra S. Panwar
Given the rapid increase in traffic, greater demands have been put on high-speed switching systems. Such systems have to simultaneously meet several constraints, e.g., high throughput, low delay and low complexity. This makes it challenging to design an efficient scheduling algorithm, and has consequently drawn considerable research interest. However, previous results either cannot provide a $100\%$ throughput guarantee without a speedup, or require a complex centralized scheduler. In this paper, we design a {\it distributed} $100 \%$ throughput algorithm for crosspoint buffered switches, called DISQUO, with very limited message passing. We prove that DISQUO can achieve $100\%$ throughput for any admissible Bernoulli traffic, with a low time complexity of $O(1)$ per port. To the best of our knowledge, it is the first distributed algorithm that can provide a $100\%$ throughput for a crosspoint buffered switch.
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- Authors: Shunyuan YeYanming ShenShivendra S. Panwar
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- Internet Archive ID: arxiv-1406.4235
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20Algorithms For Bicriterion And Constrained Scheduling Problems
By A K Krishna
Book Source: Digital Library of India Item 2015.182200 dc.contributor.author: A K Krishna dc.date.accessioned: 2015-07-07T15:30:59Z dc.date.available: 2015-07-07T15:30:59Z dc.date.digitalpublicationdate: 0008-09-05 dc.identifier.barcode: 1990010086471 dc.identifier.origpath: /rawdataupload/upload/0086/471 dc.identifier.copyno: 1 dc.identifier.uri: http://www.new.dli.ernet.in/handle/2015/182200 dc.description.scanningcentre: IIIT, Allahabad dc.description.main: 1 dc.description.tagged: 0 dc.description.totalpages: 63 dc.format.mimetype: application/pdf dc.language.iso: English dc.publisher.digitalrepublisher: Digital Library Of India dc.publisher: I I T Kanpur dc.rights: Out_of_copyright dc.source.library: I I T Kanpur dc.subject.classification: Technology dc.subject.classification: Depart Of Industrial And Magement dc.title: Algorithms For Bicriterion And Constrained Scheduling Problems
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- Title: ➤ Algorithms For Bicriterion And Constrained Scheduling Problems
- Author: A K Krishna
- Language: English
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21DTIC ADA1037966: Parallel Scheduling Algorithms.
By Defense Technical Information Center
We obtain fast parallel algorithms for several scheduling problems. Some of the problems considered are: scheduling to minimize the number of tardy jobs; job sequencing with deadlines; scheduling to minimize earliness and tardiness penalties; channel assignment; and minimizing the mean finish time. The shared memory model of parallel computers is used. (Author)
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- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - Dekel, Eliezer - MINNESOTA UNIV MINNEAPOLIS DEPT OF COMPUTER SCIENCE - *ALGORITHMS - *PARALLEL PROCESSING - *SCHEDULING - *COMPUTER APPLICATIONS - MATHEMATICAL LOGIC - COMPUTER ARCHITECTURE - APPROXIMATION(MATHEMATICS) - MULTIPROCESSORS - STATISTICAL ANALYSIS - MEAN - BOOLEAN ALGEBRA - FAULT TREE ANALYSIS
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- Internet Archive ID: DTIC_ADA1037966
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22DTIC AD1020207: Competitive Algorithms And Lower Bounds For On-Line Scheduling Of Multiprocessor Real-Time Systems
By Defense Technical Information Center
We study competitive on-line scheduling in multi-processor real-time environments. In our model, every task has a deadline and a value that it obtains only if it completes by its deadline. A task can be assigned to any processor, all of which are equally powerful. The problem is to design an on-line scheduling algorithm (i.e. the scheduler has no knowledge of a task until it is released) with worst case guarantees as to the total value obtained by the system.
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- Author: ➤ Defense Technical Information Center
- Language: English
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- Subjects: ➤ DTIC Archive - Koren,Gilad - Courant Institute of Mathematical Sciences New York United States - multiprocessors - scheduling - algorithms - value
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- Internet Archive ID: DTIC_AD1020207
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23Polynomial Time Algorithms For Minimum Energy Scheduling
By Philippe Baptiste, Marek Chrobak and Christoph Durr
The aim of power management policies is to reduce the amount of energy consumed by computer systems while maintaining satisfactory level of performance. One common method for saving energy is to simply suspend the system during the idle times. No energy is consumed in the suspend mode. However, the process of waking up the system itself requires a certain fixed amount of energy, and thus suspending the system is beneficial only if the idle time is long enough to compensate for this additional energy expenditure. In the specific problem studied in the paper, we have a set of jobs with release times and deadlines that need to be executed on a single processor. Preemptions are allowed. The processor requires energy L to be woken up and, when it is on, it uses one unit of energy per one unit of time. It has been an open problem whether a schedule minimizing the overall energy consumption can be computed in polynomial time. We solve this problem in positive, by providing an O(n^5)-time algorithm. In addition we provide an O(n^4)-time algorithm for computing the minimum energy schedule when all jobs have unit length.
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- Title: ➤ Polynomial Time Algorithms For Minimum Energy Scheduling
- Authors: Philippe BaptisteMarek ChrobakChristoph Durr
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- Internet Archive ID: arxiv-0908.3505
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24Approaching Throughput-optimality In Distributed CSMA Scheduling Algorithms With Collisions
By Libin Jiang and Jean Walrand
It was shown recently that CSMA (Carrier Sense Multiple Access)-like distributed algorithms can achieve the maximal throughput in wireless networks (and task processing networks) under certain assumptions. One important, but idealized assumption is that the sensing time is negligible, so that there is no collision. In this paper, we study more practical CSMA-based scheduling algorithms with collisions. First, we provide a Markov chain model and give an explicit throughput formula which takes into account the cost of collisions and overhead. The formula has a simple form since the Markov chain is "almost" time-reversible. Second, we propose transmission-length control algorithms to approach throughput optimality in this case. Sufficient conditions are given to ensure the convergence and stability of the proposed algorithms. Finally, we characterize the relationship between the CSMA parameters (such as the maximum packet lengths) and the achievable capacity region.
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- Title: ➤ Approaching Throughput-optimality In Distributed CSMA Scheduling Algorithms With Collisions
- Authors: Libin JiangJean Walrand
- Language: English
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- Internet Archive ID: arxiv-1011.3594
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25Evaluations Of Some Scheduling Algorithms For Hard Real-time Systems
By Fan, Bao-Hua
The Computer Aided Prototyping System (CAPS) and the Prototype system Description Language (PSDL) represent a pioneering effort in the field of software development. Execution Support System (ESS) within the framework of CAPS. The Static Scheduler is one of the critical elements of the ESS which extracts critical timing constraints and precedence constraints for operators and schedules the time-critical operators to guarantee that their timing constraints will be met. The Static Scheduler uses the information of timing constraints and precedence constraints to determine whether a feasible schedule can be built. This construction provides the foundation for handling the execution for Real-Time systems. The goal of this thesis is to provide improved versions of the Static Scheduler.
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- Title: ➤ Evaluations Of Some Scheduling Algorithms For Hard Real-time Systems
- Author: Fan, Bao-Hua
- Language: English
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- Subjects: ➤ Real-time data processing - Production scheduling,Data processing. - Hard real-time systems - Prototype System - Execution Support System (ESS) - Computer Aided Prototyping System (CAPS)
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- Internet Archive ID: evaluationsofsom1094530641
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26Performance Analysis Of Uplink Scheduling Algorithms In LTE Networks
By Shafinaz Bt Ismail, Darmawaty Bt Mohd Ali, Norsuzila Ya’acob
Scheduling is referring to the process of allocating resources to User Equipment based on scheduling algorithms that is located at the LTE base station. Various algorithms have been proposed as the execution of scheduling algorithm, which represents an open issue in Long Term Evolution (LTE) standard. This paper makes an attempt to study and compare the performance of three well-known uplink schedulers namely, Maximum Throughput (MT), First Maximum Expansion (FME), and Round Robin (RR). The evaluation is considered for a single cell with interference for three flows such as Best effort, Video and VoIP in a pedestrian environment using the LTE-SIM network simulator. The performance evaluation is conducted in terms of system throughput, fairness index, delay and packet loss ratio (PLR). The simulations results show that RR algorithm always reaches the lowest PLR, delivering highest throughput for video and VoIP flows among all those strategies. Thus, RR is the most suitable scheduling algorithm for VoIP and video flows while MT and FME is appropriate for BE flows in LTE networks.
“Performance Analysis Of Uplink Scheduling Algorithms In LTE Networks” Metadata:
- Title: ➤ Performance Analysis Of Uplink Scheduling Algorithms In LTE Networks
- Author: ➤ Shafinaz Bt Ismail, Darmawaty Bt Mohd Ali, Norsuzila Ya’acob
- Language: English
“Performance Analysis Of Uplink Scheduling Algorithms In LTE Networks” Subjects and Themes:
- Subjects: LTE - Scheduling algorithms - Uplink
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- Internet Archive ID: ➤ 32-cssr-ijeecs-1570403953-feb-edit-lf
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27NASA Technical Reports Server (NTRS) 20110023722: Using A Portfolio Of Algorithms For Planning And Scheduling
By NASA Technical Reports Server (NTRS)
The Automated Scheduling and Planning Environment (ASPEN) software system, aspects of which have been reported in several previous NASA Tech Briefs articles, includes a subsystem that utilizes a portfolio of heuristic algorithms that work synergistically to solve problems. The nature of the synergy of the specific algorithms is that their likelihoods of success are negatively correlated: that is, when a combination of them is used to solve a problem, the probability that at least one of them will succeed is greater than the sum of probabilities of success of the individual algorithms operating independently of each other. In ASPEN, the portfolio of algorithms is used in a planning process of the iterative repair type, in which conflicts are detected and addressed one at a time until either no conflicts exist or a user-defined time limit has been exceeded. At each choice point (e.g., selection of conflict; selection of method of resolution of conflict; or choice of move, addition, or deletion) ASPEN makes a stochastic choice of a combination of algorithms from the portfolio. This approach makes it possible for the search to escape from looping and from solutions that are locally but not globally optimum.
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- Title: ➤ NASA Technical Reports Server (NTRS) 20110023722: Using A Portfolio Of Algorithms For Planning And Scheduling
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 20110023722: Using A Portfolio Of Algorithms For Planning And Scheduling” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ALGORITHMS - HEURISTIC METHODS - PLANNING - SCHEDULING - SELECTION - SEQUENCING - STOCHASTIC PROCESSES - COMPUTER PROGRAMMING - Sherwood, Robert - Knight, Russell - Rabideau, Gregg - Chien, Steve - Tran, Daniel - Engelhardt, Barbara
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- Internet Archive ID: NASA_NTRS_Archive_20110023722
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28Dynamic Algorithms For Interval Scheduling On A Single Machine
By Alex Gavryushkin, Bakhadyr Khoussainov, Mikhail Kokho and Jiamou Liu
We investigate dynamic algorithms for the interval scheduling problem. Our algorithm runs in amortised time $O(\log n)$ for query operation and $O(d\log^2 n)$ for insertion and removal operations, where $n$ and $d$ are the maximal numbers of intervals and pairwise overlapping intervals respectively. We also show that for a monotonic set, that is when no interval properly contains another interval, the amortised complexity is $O(\log n)$ for both query and update operations. We compare the two algorithms for the monotonic interval sets using experiments.
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- Title: ➤ Dynamic Algorithms For Interval Scheduling On A Single Machine
- Authors: Alex GavryushkinBakhadyr KhoussainovMikhail KokhoJiamou Liu
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- Internet Archive ID: arxiv-1412.8005
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29Just-in-time Scheduling : Models And Algorithms For Computer And Manufacturing Systems
We investigate dynamic algorithms for the interval scheduling problem. Our algorithm runs in amortised time $O(\log n)$ for query operation and $O(d\log^2 n)$ for insertion and removal operations, where $n$ and $d$ are the maximal numbers of intervals and pairwise overlapping intervals respectively. We also show that for a monotonic set, that is when no interval properly contains another interval, the amortised complexity is $O(\log n)$ for both query and update operations. We compare the two algorithms for the monotonic interval sets using experiments.
“Just-in-time Scheduling : Models And Algorithms For Computer And Manufacturing Systems” Metadata:
- Title: ➤ Just-in-time Scheduling : Models And Algorithms For Computer And Manufacturing Systems
- Language: English
“Just-in-time Scheduling : Models And Algorithms For Computer And Manufacturing Systems” Subjects and Themes:
- Subjects: ➤ Production scheduling -- Mathematical models - Just-in-time systems - Business logistics
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- Internet Archive ID: isbn_9780387717173
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30NASA Technical Reports Server (NTRS) 19900019755: Efficient Mapping Algorithms For Scheduling Robot Inverse Dynamics Computation On A Multiprocessor System
By NASA Technical Reports Server (NTRS)
Two efficient mapping algorithms for scheduling the robot inverse dynamics computation consisting of m computational modules with precedence relationship to be executed on a multiprocessor system consisting of p identical homogeneous processors with processor and communication costs to achieve minimum computation time are presented. An objective function is defined in terms of the sum of the processor finishing time and the interprocessor communication time. The minimax optimization is performed on the objective function to obtain the best mapping. This mapping problem can be formulated as a combination of the graph partitioning and the scheduling problems; both have been known to be NP-complete. Thus, to speed up the searching for a solution, two heuristic algorithms were proposed to obtain fast but suboptimal mapping solutions. The first algorithm utilizes the level and the communication intensity of the task modules to construct an ordered priority list of ready modules and the module assignment is performed by a weighted bipartite matching algorithm. For a near-optimal mapping solution, the problem can be solved by the heuristic algorithm with simulated annealing. These proposed optimization algorithms can solve various large-scale problems within a reasonable time. Computer simulations were performed to evaluate and verify the performance and the validity of the proposed mapping algorithms. Finally, experiments for computing the inverse dynamics of a six-jointed PUMA-like manipulator based on the Newton-Euler dynamic equations were implemented on an NCUBE/ten hypercube computer to verify the proposed mapping algorithms. Computer simulation and experimental results are compared and discussed.
“NASA Technical Reports Server (NTRS) 19900019755: Efficient Mapping Algorithms For Scheduling Robot Inverse Dynamics Computation On A Multiprocessor System” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19900019755: Efficient Mapping Algorithms For Scheduling Robot Inverse Dynamics Computation On A Multiprocessor System
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19900019755: Efficient Mapping Algorithms For Scheduling Robot Inverse Dynamics Computation On A Multiprocessor System” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ALGORITHMS - COMPUTERIZED SIMULATION - HEURISTIC METHODS - HYPERCUBE MULTIPROCESSORS - MANIPULATORS - MULTIPROCESSING (COMPUTERS) - OPTIMIZATION - ROBOT DYNAMICS - SCHEDULING - SUPERCONDUCTING DEVICES - COMPUTATION - COSTS - INTERPROCESSOR COMMUNICATION - MODULES - PRIORITIES - SIMULATED ANNEALING - Lee, C. S. G. - Chen, C. L.
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- Internet Archive ID: NASA_NTRS_Archive_19900019755
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31DTIC ADA226930: Evaluations Of Some Scheduling Algorithms For Hard Real-Time Systems
By Defense Technical Information Center
The Computer Aided Prototyping System (CAPS) and the Prototype system Description Language (PSDL) represent a pioneering effort in the field of software development. Execution Support System (ESS) within the framework of CAPS. The Static Scheduler is one of the critical elements of the ESS which extracts critical timing constraints and precedence constraints for operators and schedules the time-critical operators to guarantee that their timing constraints will be met. The Static Scheduler uses the information of timing constraints and precedence constraints to determine whether a feasible schedule can be built. This construction provides the foundation for handling the execution for Real-Time systems. The goal of this thesis is to provide improved versions of the Static Scheduler.
“DTIC ADA226930: Evaluations Of Some Scheduling Algorithms For Hard Real-Time Systems” Metadata:
- Title: ➤ DTIC ADA226930: Evaluations Of Some Scheduling Algorithms For Hard Real-Time Systems
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA226930: Evaluations Of Some Scheduling Algorithms For Hard Real-Time Systems” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Fan, Bao-Hua - NAVAL POSTGRADUATE SCHOOL MONTEREY CA - *SCHEDULING - *COMPUTER PROGRAMS - LANGUAGE - PROTOTYPES - REAL TIME - ALGORITHMS - THESES
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- Internet Archive ID: DTIC_ADA226930
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32DTIC ADA109149: Preliminary Report 1 On Rapid Response Algorithms For Optimizing The Utilization Of Human Resources In Flight Crews: Scheduling Aircrews To Aircrafts
By Defense Technical Information Center
Consider an airlift operation which consists of several routes, each having missions which are subject to given time schedules. The aircraft are manned with aircrews that are required to rest for a certain period of time after each leg of a mission. A mission may be continued whenever a rested aircrew is available at the location. Given the number of missions that are needed to be flown on the different routes, and given the schedule timetable that is associated with those missions, we consider the problems: (1) What is the minimum number of crews that are needed to maintain the operation? (2) How many aircrews are needed to be staged at each location? (3) If the number of available aircrews is less than the minimum needed, which legs of what missions may be delayed so that the minimum required number of aircrews is reduced? We will exclude from the analysis the trivial case where the rest period of the aircrews is always less than the period of time for which the aircrafts are delayed. If this is the case, then it is clear that the minimum number of aircrews is equal to the number of missions and all the aircrews must be staged initially at the home base.
“DTIC ADA109149: Preliminary Report 1 On Rapid Response Algorithms For Optimizing The Utilization Of Human Resources In Flight Crews: Scheduling Aircrews To Aircrafts” Metadata:
- Title: ➤ DTIC ADA109149: Preliminary Report 1 On Rapid Response Algorithms For Optimizing The Utilization Of Human Resources In Flight Crews: Scheduling Aircrews To Aircrafts
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA109149: Preliminary Report 1 On Rapid Response Algorithms For Optimizing The Utilization Of Human Resources In Flight Crews: Scheduling Aircrews To Aircrafts” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Armstrong, R. - TEXAS UNIV AT AUSTIN CENTER FOR CYBERNETIC STUDIES - *HUMAN RESOURCES - *FLIGHT CREWS - *SCHEDULING - *RESOURCE MANAGEMENT - ALGORITHMS - QUICK REACTION - OPTIMIZATION - AIRCRAFT - PARAMETERS - LINEAR PROGRAMMING - USER NEEDS - ROUTING - NETWORK ANALYSIS(MANAGEMENT).
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- Internet Archive ID: DTIC_ADA109149
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33DTIC ADA289306: A Gain Scheduling Optimization Method Using Genetic Algorithms.
By Defense Technical Information Center
Gain scheduling. the traditional method of providing adaptive control to a nonlinear system, has long been an ad hoc design process. Until recently; little theoretical guidance directed this practitioners' art. For this reason a systematic study of this design process and its potential for optimization has never been accomplished. Additionally, the nonlinearities and the large search space involved in gain scheduling also precluded such an optimization study. Traditionally, the gain scheduling process has been some variation of a linear interpolation between discrete design points. By using powerful non-traditional optimization tools such as genetic algorithms there are ways of improving this design process. This thesis utilizes the power of genetic algorithms to optimally design a gain schedule. First, a design methodology is validated on a simple pole placement problem, then demonstrated for an F-18 Super-maneuverable Fighter. From this experience, a general gain scheduling design process is developed and presented.
“DTIC ADA289306: A Gain Scheduling Optimization Method Using Genetic Algorithms.” Metadata:
- Title: ➤ DTIC ADA289306: A Gain Scheduling Optimization Method Using Genetic Algorithms.
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA289306: A Gain Scheduling Optimization Method Using Genetic Algorithms.” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Martin, Robert C., IV - AIR FORCE INST OF TECH WRIGHT-PATTERSON AFB OH - *MATHEMATICAL MODELS - *ADAPTIVE CONTROL SYSTEMS - *FLIGHT CONTROL SYSTEMS - ALGORITHMS - OPTIMIZATION - THESES - NONLINEAR SYSTEMS - SCHEDULING - LINEARITY - INTERPOLATION - GAIN - DISCRETE DISTRIBUTION - GUIDANCE - POWER - FLIGHT ENVELOPE - FLIGHT MANEUVERS - GENETICS.
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- Internet Archive ID: DTIC_ADA289306
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34Approximation Algorithms For Wireless Link Scheduling With Flexible Data Rates
By Thomas Kesselheim
We consider scheduling problems in wireless networks with respect to flexible data rates. That is, more or less data can be transmitted per time depending on the signal quality, which is determined by the signal-to-interference-plus-noise ratio (SINR). Each wireless link has a utility function mapping SINR values to the respective data rates. We have to decide which transmissions are performed simultaneously and (depending on the problem variant) also which transmission powers are used. In the capacity-maximization problem, one strives to maximize the overall network throughput, i.e., the summed utility of all links. For arbitrary utility functions (not necessarily continuous ones), we present an O(log n)-approximation when having n communication requests. This algorithm is built on a constant-factor approximation for the special case of the respective problem where utility functions only consist of a single step. In other words, each link has an individual threshold and we aim at maximizing the number of links whose threshold is satisfied. On the way, this improves the result in [Kesselheim, SODA 2011] by not only extending it to individual thresholds but also showing a constant approximation factor independent of assumptions on the underlying metric space or the network parameters. In addition, we consider the latency-minimization problem. Here, each link has a demand, e.g., representing an amount of data. We have to compute a schedule of shortest possible length such that for each link the demand is fulfilled, that is the overall summed utility (or data transferred) is at least as large as its demand. Based on the capacity-maximization algorithm, we show an O(log^2 n)-approximation for this problem.
“Approximation Algorithms For Wireless Link Scheduling With Flexible Data Rates” Metadata:
- Title: ➤ Approximation Algorithms For Wireless Link Scheduling With Flexible Data Rates
- Author: Thomas Kesselheim
- Language: English
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- Internet Archive ID: arxiv-1205.1331
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35A Target Coverage Scheduling Scheme Based On Genetic Algorithms In Directional Sensor Networks.
By Gil, Joon-Min and Han, Youn-Hee
This article is from Sensors (Basel, Switzerland) , volume 11 . Abstract As a promising tool for monitoring the physical world, directional sensor networks (DSNs) consisting of a large number of directional sensors are attracting increasing attention. As directional sensors in DSNs have limited battery power and restricted angles of sensing range, maximizing the network lifetime while monitoring all the targets in a given area remains a challenge. A major technique to conserve the energy of directional sensors is to use a node wake-up scheduling protocol by which some sensors remain active to provide sensing services, while the others are inactive to conserve their energy. In this paper, we first address a Maximum Set Covers for DSNs (MSCD) problem, which is known to be NP-complete, and present a greedy algorithm-based target coverage scheduling scheme that can solve this problem by heuristics. This scheme is used as a baseline for comparison. We then propose a target coverage scheduling scheme based on a genetic algorithm that can find the optimal cover sets to extend the network lifetime while monitoring all targets by the evolutionary global search technique. To verify and evaluate these schemes, we conducted simulations and showed that the schemes can contribute to extending the network lifetime. Simulation results indicated that the genetic algorithm-based scheduling scheme had better performance than the greedy algorithm-based scheme in terms of maximizing network lifetime.
“A Target Coverage Scheduling Scheme Based On Genetic Algorithms In Directional Sensor Networks.” Metadata:
- Title: ➤ A Target Coverage Scheduling Scheme Based On Genetic Algorithms In Directional Sensor Networks.
- Authors: Gil, Joon-MinHan, Youn-Hee
- Language: English
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- Internet Archive ID: pubmed-PMC3274050
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36DTIC ADA228542: Optimization Algorithms For New Computer Architectures With Application To Routing And Scheduling (Year 3)
By Defense Technical Information Center
One of the most important computer architecture innovations to appear in the market place during the last ten years is parallel processing on a shared memory multicomputer. This report presents new algorithms for a variety of network models along with empirical analysis on both sequential and parallel computers. An empirical study on the AT and T KORBX system is also presented. This system uses eight processors each of which has vector capability. Our research program objective is to develop and empirically test new parallel algorithms and software for a wide variety of optimization problems. The problems studied this past year include the shortest path problem, the assignment problem, the semi-assignment problem, the transportation problem, and the generalized network problem. Algorithms for all of these models have been developed and empirically tested on a variety of computers. In addition, we worked with the Military Airlift Command to test the AT&T KORBX system located at Scott Air Force Base. (kr)
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- Title: ➤ DTIC ADA228542: Optimization Algorithms For New Computer Architectures With Application To Routing And Scheduling (Year 3)
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA228542: Optimization Algorithms For New Computer Architectures With Application To Routing And Scheduling (Year 3)” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Kennington, Jeffrey L - SOUTHERN METHODIST UNIV DALLAS TX DEPT OF COMPUTER SCIENCE AND ENGINEERING - *COMPUTER ARCHITECTURE - *OPTIMIZATION - *ALGORITHMS - EXPERIMENTAL DATA - MODELS - NETWORKS - COMPUTERS - PATHS - PARALLEL PROCESSING - SEQUENCES - MEMORY DEVICES - SCHEDULING - VECTOR ANALYSIS - MULTIPROCESSORS - ROUTING - AIR FORCE FACILITIES - COMPUTER NETWORKS - TRANSPORTATION - TIME SHARING - TEST AND EVALUATION - COMPUTER PROGRAMS
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- Internet Archive ID: DTIC_ADA228542
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37Simulation Of Process Scheduling Algorithms
By Daw Khin Po
In a multiprogramming system, multiple processes exist concurrently in main memory. Each process alternates between using a processor and waiting for some event to occur, such as the completion of an I O operation. The processor or processors are kept busy by executing one process while the others wait. The key to multiprogramming is scheduling. CPU scheduling deals with the problem of deciding which of the processes in the ready queue is to be allocated the CPU. By switching the CPU among processor the operating system can make the computer more productive. Scheduling affectes the performance of the system because it determines which processes will wait and which will progress. In this paper, simulation of various scheduling algorithm First Come First Served FCFS , Round Robin RR , Shortest Process Next SPN and Shortest Remaining Time SRT is done over C Daw Khin Po "Simulation of Process Scheduling Algorithms" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-4 , June 2019, URL: https://www.ijtsrd.com/papers/ijtsrd25124.pdf Paper URL: https://www.ijtsrd.com/computer-science/operating-system/25124/simulation-of-process-scheduling-algorithms/daw-khin-po
“Simulation Of Process Scheduling Algorithms” Metadata:
- Title: ➤ Simulation Of Process Scheduling Algorithms
- Author: Daw Khin Po
- Language: English
“Simulation Of Process Scheduling Algorithms” Subjects and Themes:
- Subjects: Operating System - Simulation - Scheduling algorithm - Multiprogramming - I/O operation
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- Internet Archive ID: ➤ httpswww.ijtsrd.comcomputer-scienceoperating-system25124simulation-of-process-sc
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38Efficient Algorithms For Cyclic Scheduling
By Gasperoni, Franco and Schwiegelshohn, Uwe
16 p. 28 cm
“Efficient Algorithms For Cyclic Scheduling” Metadata:
- Title: ➤ Efficient Algorithms For Cyclic Scheduling
- Authors: Gasperoni, FrancoSchwiegelshohn, Uwe
- Language: English
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- Internet Archive ID: efficientalgorit00gasp
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39Bayesian Truthful Mechanisms For Job Scheduling From Bi-criterion Approximation Algorithms
By Constantinos Daskalakis and S. Matthew Weinberg
We provide polynomial-time approximately optimal Bayesian mechanisms for makespan minimization on unrelated machines as well as for max-min fair allocations of indivisible goods, with approximation factors of $2$ and $\min\{m-k+1, \tilde{O}(\sqrt{k})\}$ respectively, matching the approximation ratios of best known polynomial-time \emph{algorithms} (for max-min fairness, the latter claim is true for certain ratios of the number of goods $m$ to people $k$). Our mechanisms are obtained by establishing a polynomial-time approximation-sensitive reduction from the problem of designing approximately optimal {\em mechanisms} for some arbitrary objective ${\cal O}$ to that of designing bi-criterion approximation {\em algorithms} for the same objective ${\cal O}$ plus a linear allocation cost term. Our reduction is itself enabled by extending the celebrated "equivalence of separation and optimization"[GLSS81,KP80] to also accommodate bi-criterion approximations. Moreover, to apply the reduction to the specific problems of makespan and max-min fairness we develop polynomial-time bi-criterion approximation algorithms for makespan minimization with costs and max-min fairness with costs, adapting the algorithms of [ST93], [BD05] and [AS07] to the type of bi-criterion approximation that is required by the reduction.
“Bayesian Truthful Mechanisms For Job Scheduling From Bi-criterion Approximation Algorithms” Metadata:
- Title: ➤ Bayesian Truthful Mechanisms For Job Scheduling From Bi-criterion Approximation Algorithms
- Authors: Constantinos DaskalakisS. Matthew Weinberg
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- Internet Archive ID: arxiv-1405.5940
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40Efficient Task Scheduling For Cloud Computing: A Comparative Survey Of State-of-the-art Algorithms
Cloud computing is an essential tool for sharing resources across virtual machines, and it relies on scheduling and load balancing to ensure that tasks are assigned to the most appropriate resources. Multiple independent tasks need to be handled by cloud computing, and static and dynamic scheduling plays a crucial role in allocating tasks to the right resources. This is especially important in heterogeneous environments, where algorithms can improve load balancing and enhance cloud computing's efficiency. This paper aims to evaluate and discuss algorithms that can improve load balancing in cloud systems.
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- Title: ➤ Efficient Task Scheduling For Cloud Computing: A Comparative Survey Of State-of-the-art Algorithms
- Language: English
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- Internet Archive ID: ➤ httpswww.bidacv.comarticle_172461.html
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41DTIC ADA256799: Approximation Algorithms For Multicommodity Flow And Shop Scheduling Problems
By Defense Technical Information Center
In this thesis, we give efficient approximation algorithms for two classical combinatorial optimization problems: multicommodity flow problems and shop scheduling problem. The algorithms we develop for these problems yield solutions that are not necessarily optimal, but come with a provable performance guarantee; that is, we can guarantee that the solution found is within a certain percentage of the optimal solution. This type of algorithm is known as an approximation algorithm. Our results show that by allowing a small error in the solution of a problem, it is often possible to gain a significant reduction in the running time of an algorithm for that problem. In Chapter 2, we study the multicommodity flow problem. The multicommodity flow problem involves simultaneously shipping several different commodities from their respective sources to their sinks in a single network so that the total amount of flow going through each edge is no more than its capacity. Associated with each commodity is a demand, which is the amount of that commodity that we wish to ship. Given a multicommodity flow problem, one often wants to know if there is a feasible flow, i.e., if it is possible to find a flow that satisfies the demands and obeys the capacity constraints. More generally, we might wish to know the maximum percentage z such that at least z percent of each demand can be shipped without violating the capacity constraints. The latter problem is known as the concurrent flow problem. multicommodity flow, scheduling, combinatorial optimization, network algorithms, approximation algorithms, randomized algorithms.
“DTIC ADA256799: Approximation Algorithms For Multicommodity Flow And Shop Scheduling Problems” Metadata:
- Title: ➤ DTIC ADA256799: Approximation Algorithms For Multicommodity Flow And Shop Scheduling Problems
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA256799: Approximation Algorithms For Multicommodity Flow And Shop Scheduling Problems” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Stein, Clifford - content="NAVAL POSTGRADUATE SCHOOL MONTEREY CAEconomics and Cost Analysis, Military Forces and Organizations"> - *ALGORITHMS - *SCHEDULING - *COMMODITIES - SHIPS - OPTIMIZATION - NETWORKS - EDGES - GAIN - SHIPPING - FLOW - ERRORS - THESES - REDUCTION - TIME - GUARANTEES
Edition Identifiers:
- Internet Archive ID: DTIC_ADA256799
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42DTIC ADA435191: Weapon Release Scheduling From Multiple-Bay Aircraft Using Multi-Objective Evolutionary Algorithms
By Defense Technical Information Center
The United States Air Force has put an increased emphasis on the timely delivery of precision weapons. Part of this effort has been to us multiple bay aircraft such the B-1B Lancer and B-52 Stratofortress to provide Close Air Support and responsive strikes using 1760 weapons. In order to provide greater flexibility, the aircraft carry heterogeneous payloads which can require deconfiction in order to drop multiple different types of weapons. Current methods of deconfiction and weapon selection are highly crew dependant and work intensive. This research effort investigates the optimization of an algorithm for weapon release which allows the aircraft to perform deconfiction automatically. This reduces crew load and response time in order to deal with time-sensitive targets. The overall problem maps to the Job-Shop Scheduling problem. Optimization of the algorithm is done through the General Multiobjective Parallel Genetic Algorithm (GENMOP). We examine the results from pedagogical experiments and real-world test scenarios in the light of improving decision making. The results are encouraging in that the program proves capable of nding acceptable release schedules, however the solution space is such that applying the program to real world situations is unnecessary. We present visualizations of the schedules which demonstrate these conclusions.
“DTIC ADA435191: Weapon Release Scheduling From Multiple-Bay Aircraft Using Multi-Objective Evolutionary Algorithms” Metadata:
- Title: ➤ DTIC ADA435191: Weapon Release Scheduling From Multiple-Bay Aircraft Using Multi-Objective Evolutionary Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA435191: Weapon Release Scheduling From Multiple-Bay Aircraft Using Multi-Objective Evolutionary Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Lyons, Francis R - AIR FORCE INST OF TECH WRIGHT-PATTERSON AFB OH SCHOOL OF ENGINEERING AND MANAGEMENT - *ALGORITHMS - *SCHEDULING - TEST AND EVALUATION - WEAPONS - SCENARIOS - AIR FORCE - DELIVERY - UNITED STATES - PAYLOAD - OPTIMIZATION - AIRCRAFT - DECISION MAKING - CLOSE SUPPORT - REACTION TIME - THESES - PARALLEL PROCESSING - TARGETS - SENSITIVITY - TIME - CREWS - TACTICAL AIR SUPPORT - PRECISION - RELEASE - HETEROGENEITY - MAPS - TIMELINESS - SELECTION - GENETICS
Edition Identifiers:
- Internet Archive ID: DTIC_ADA435191
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43Scheduling With Gaps: New Models And Algorithms
By Marek Chrobak, Mordecai Golin, Tak-Wah Lam and Dorian Nogneng
We consider scheduling problems for unit jobs with release times, where the number or size of the gaps in the schedule is taken into consideration, either in the objective function or as a constraint. Except for a few papers on energy minimization, there is no work in the scheduling literature that uses performance metrics depending on the gap structure of a schedule. One of our objectives is to initiate the study of such scheduling problems with gaps. We show that such problems often lead to interesting algorithmic problems, with connections to other areas of algorithmics. We focus on the model with unit jobs. First we examine scheduling problems with deadlines, where we consider variants of minimum-gap scheduling, including maximizing throughput with a budget for gaps or minimizing the number of gaps with a throughput requirement. We then turn to other objective functions. For example, in some scenarios, gaps in a schedule may be actually desirable, leading to the problem of maximizing the number of gaps. Other versions we study include minimizing maximum gap or maximizing minimum gap. The second part of the paper examines the model without deadlines, where we focus on the tradeoff between the number of gaps and the total or maximum flow time. For all these problems we provide polynomial time algorithms, with running times ranging from $O(n \log n)$ for some problems, to $O(n^7)$ for other. The solutions involve a spectrum of algo- rithmic techniques, including different dynamic programming formulations, speed-up techniques based on searching Monge arrays, searching X + Y matrices, or implicit binary search.
“Scheduling With Gaps: New Models And Algorithms” Metadata:
- Title: ➤ Scheduling With Gaps: New Models And Algorithms
- Authors: Marek ChrobakMordecai GolinTak-Wah LamDorian Nogneng
“Scheduling With Gaps: New Models And Algorithms” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: arxiv-1410.7092
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44NASA Technical Reports Server (NTRS) 20030062898: Scheduling Earth Observing Satellites With Evolutionary Algorithms
By NASA Technical Reports Server (NTRS)
We hypothesize that evolutionary algorithms can effectively schedule coordinated fleets of Earth observing satellites. The constraints are complex and the bottlenecks are not well understood, a condition where evolutionary algorithms are often effective. This is, in part, because evolutionary algorithms require only that one can represent solutions, modify solutions, and evaluate solution fitness. To test the hypothesis we have developed a representative set of problems, produced optimization software (in Java) to solve them, and run experiments comparing techniques. This paper presents initial results of a comparison of several evolutionary and other optimization techniques; namely the genetic algorithm, simulated annealing, squeaky wheel optimization, and stochastic hill climbing. We also compare separate satellite vs. integrated scheduling of a two satellite constellation. While the results are not definitive, tests to date suggest that simulated annealing is the best search technique and integrated scheduling is superior.
“NASA Technical Reports Server (NTRS) 20030062898: Scheduling Earth Observing Satellites With Evolutionary Algorithms” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 20030062898: Scheduling Earth Observing Satellites With Evolutionary Algorithms
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 20030062898: Scheduling Earth Observing Satellites With Evolutionary Algorithms” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ALGORITHMS - GENETIC ALGORITHMS - EARTH OBSERVING SYSTEM (EOS) - SATELLITE CONSTELLATIONS - SIMULATED ANNEALING - SCHEDULING - STOCHASTIC PROCESSES - HEURISTIC METHODS - JAVA (PROGRAMMING LANGUAGE) - Globus, AlCrawford, JamesLohn, JasonPryor, Anna
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_20030062898
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45Approximate Parallel Scheduling. Part II: Applications To Optimal Parallel Graph Algorithms In Logarithmic Time
By Cole, Richard and Vishkin, U
42 p. 28 cm
“Approximate Parallel Scheduling. Part II: Applications To Optimal Parallel Graph Algorithms In Logarithmic Time” Metadata:
- Title: ➤ Approximate Parallel Scheduling. Part II: Applications To Optimal Parallel Graph Algorithms In Logarithmic Time
- Authors: Cole, RichardVishkin, U
- Language: English
Edition Identifiers:
- Internet Archive ID: approximatepar00cole
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46Approximation Algorithms For Multiprocessor Scheduling Under Uncertainty
By Guolong Lin and Rajmohan Rajaraman
Motivated by applications in grid computing and project management, we study multiprocessor scheduling in scenarios where there is uncertainty in the successful execution of jobs when assigned to processors. We consider the problem of multiprocessor scheduling under uncertainty, in which we are given n unit-time jobs and m machines, a directed acyclic graph C giving the dependencies among the jobs, and for every job j and machine i, the probability p_{ij} of the successful completion of job j when scheduled on machine i in any given particular step. The goal of the problem is to find a schedule that minimizes the expected makespan, that is, the expected completion time of all the jobs. The problem of multiprocessor scheduling under uncertainty was introduced by Malewicz and was shown to be NP-hard even when all the jobs are independent. In this paper, we present polynomial-time approximation algorithms for the problem, for special cases of the dag C. We obtain an O(log(n))-approximation for the case of independent jobs, an O(log(m)log(n)log(n+m)/loglog(n+m))-approximation when C is a collection of disjoint chains, an O(log(m)log^2(n))-approximation when C is a collection of directed out- or in-trees, and an O(log(m)log^2(n)log(n+m)/loglog(n+m))-approximation when C is a directed forest.
“Approximation Algorithms For Multiprocessor Scheduling Under Uncertainty” Metadata:
- Title: ➤ Approximation Algorithms For Multiprocessor Scheduling Under Uncertainty
- Authors: Guolong LinRajmohan Rajaraman
- Language: English
Edition Identifiers:
- Internet Archive ID: arxiv-cs0703100
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47Primal-dual And Dual-fitting Analysis Of Online Scheduling Algorithms For Generalized Flow-time Problems
By Spyros Angelopoulos, Giorgio Lucarelli and Nguyen Kim Thang
We study online scheduling problems on a single processor that can be viewed as extensions of the well-studied problem of minimizing total weighted flow time. In particular, we provide a framework of analysis that is derived by duality properties, does not rely on potential functions and is applicable to a variety of scheduling problems. A key ingredient in our approach is bypassing the need for "black-box" rounding of fractional solutions, which yields improved competitive ratios. We begin with an interpretation of Highest-Density-First (HDF) as a primal-dual algorithm, and a corresponding proof that HDF is optimal for total fractional weighted flow time (and thus scalable for the integral objective). Building upon the salient ideas of the proof, we show how to apply and extend this analysis to the more general problem of minimizing $\sum_j w_j g(F_j)$, where $w_j$ is the job weight, $F_j$ is the flow time and $g$ is a non-decreasing cost function. Among other results, we present improved competitive ratios for the setting in which $g$ is a concave function, and the setting of same-density jobs but general cost functions. We further apply our framework of analysis to online weighted completion time with general cost functions as well as scheduling under polyhedral constraints.
“Primal-dual And Dual-fitting Analysis Of Online Scheduling Algorithms For Generalized Flow-time Problems” Metadata:
- Title: ➤ Primal-dual And Dual-fitting Analysis Of Online Scheduling Algorithms For Generalized Flow-time Problems
- Authors: Spyros AngelopoulosGiorgio LucarelliNguyen Kim Thang
- Language: English
“Primal-dual And Dual-fitting Analysis Of Online Scheduling Algorithms For Generalized Flow-time Problems” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: arxiv-1502.03946
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48NASA Technical Reports Server (NTRS) 20140010277: Design Principles And Algorithms For Air Traffic Arrival Scheduling
By NASA Technical Reports Server (NTRS)
This report presents design principles and algorithms for building a real-time scheduler of arrival aircraft based on a first-come-first-served (FCFS) scheduling protocol. The algorithms provide the conceptual and computational foundation for the Traffic Management Advisor (TMA) of the Center/terminal radar approach control facilities (TRACON) automation system, which comprises a set of decision support tools for managing arrival traffic at major airports in the United States. The primary objective of the scheduler is to assign arrival aircraft to a favorable landing runway and schedule them to land at times that minimize delays. A further objective of the scheduler is to allocate delays between high-altitude airspace far away from the airport and low-altitude airspace near the airport. A method of delay allocation is described that minimizes the average operating cost in the presence of errors in controlling aircraft to a specified landing time. This report is a revision of an earlier paper first presented as part of an Advisory Group for Aerospace Research and Development (AGARD) lecture series in September 1995. The authors, during vigorous discussions over the details of this paper, felt it was important to the air-trafficmanagement (ATM) community to revise and extend the original 1995 paper, providing more detail and clarity and thereby allowing future researchers to understand this foundational work as the basis for the TMA's scheduling algorithms.
“NASA Technical Reports Server (NTRS) 20140010277: Design Principles And Algorithms For Air Traffic Arrival Scheduling” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 20140010277: Design Principles And Algorithms For Air Traffic Arrival Scheduling
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 20140010277: Design Principles And Algorithms For Air Traffic Arrival Scheduling” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - AIR TRAFFIC CONTROL - RADAR APPROACH CONTROL - APPLICATIONS PROGRAMS (COMPUTERS) - ALGORITHMS - SCHEDULING - TERMINAL GUIDANCE - RUNWAYS - ARRIVALS - REAL TIME OPERATION - AUTOMATIC CONTROL - DESIGN ANALYSIS - OPERATING COSTS - LANDING - APPROACH - Erzberger, Heinz - Itoh, Eri
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_20140010277
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49DTIC ADA413647: Active Processor Scheduling Using Evolutionary Algorithms
By Defense Technical Information Center
The allocation of processes to processors has long been of interest to engineers. The processor allocation problem considered here assigns multiple applications onto a computing system. With this algorithm researchers could more efficiently examine real-time sensor data like that used by United States Air Force digital signal processing efforts or real-time aerosol hazard detection as examined by the Department of Homeland Security. Different choices for the design of a load balancing algorithm are examined in both the problem and algorithm domains. Evolutionary algorithms are used to find near-optimal solutions. These algorithms incorporate multiobjective coevolutionary and parallel principles to create an effective and efficient algorithm for real-world allocation problems. Three evolutionary algorithms (EA) are developed. The primary algorithm generates a solution to the processor allocation problem. This allocation EA is capable of evaluating objectives in both an aggregate single objective and a Pareto multiobjective manner. The other two EAs are designed for fine turning returned allocation EA solutions. One coevolutionary algorithm is used to optimize the parameters of the allocation algorithm. This meta-EA is parallelized using a coarse-grain approach to improve performance. Experiments are conducted that validate the improved effectiveness of the parallelized algorithm. Pareto multiobjective approach is used to optimize both effectiveness and efficiency objectives. The other coevolutionary algorithm generates difficult allocation problems for testing the capabilities of the allocation EA. The effectiveness of both coevolutionary algorithms for optimizing the allocation EA is examined quantitatively using standard statistical methods. Also the allocation EAs objective tradeoffs are analyzed and compared.
“DTIC ADA413647: Active Processor Scheduling Using Evolutionary Algorithms” Metadata:
- Title: ➤ DTIC ADA413647: Active Processor Scheduling Using Evolutionary Algorithms
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA413647: Active Processor Scheduling Using Evolutionary Algorithms” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Caswell, David J - AIR FORCE INST OF TECH WRIGHT-PATTERSON AFB OH SCHOOL OF ENGINEERING AND MANAGEMENT - *ALGORITHMS - *SCHEDULING - SIGNAL PROCESSING - REAL TIME - THESES - PROCESSING EQUIPMENT - EVOLUTION(GENERAL) - ALLOCATIONS - PARALLEL ORIENTATION - TRADE OFF ANALYSIS - STATISTICAL PROCESSES - MULTISENSORS - HOMELAND SECURITY
Edition Identifiers:
- Internet Archive ID: DTIC_ADA413647
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50Scheduling Algorithms In Cloud Computing - An Extensive Survey
By S. Saranya Devi ; V. Venkatesa Kumar ; M. Newlin Rajkumar
In any computing environment, the availability of resources is finite, so effective utilization of resources is very important. To achieve effective management of the available resources in a scalable environment optimal mechanism is required. In order to do this, choosing of scheduling algorithm is important. The scheduling techniques should beselected in such a way that the various user demands are satisfied. In this paper, an overview of different scheduling techniques like cost and energy aware scheduling, cloud based workflow scheduling, an improved ant colony algorithm in cloud computing environment are analysed. S. Saranya Devi | V. Venkatesa Kumar | M. Newlin Rajkumar"Scheduling Algorithms in Cloud Computing - An Extensive Survey" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-2 | Issue-1 , December 2017, URL: http://www.ijtsrd.com/papers/ijtsrd5840.pdf Article URL: http://www.ijtsrd.com/engineering/electrical-engineering/5840/scheduling-algorithms-in-cloud-computing---an-extensive-survey/s-saranya-devi
“Scheduling Algorithms In Cloud Computing - An Extensive Survey” Metadata:
- Title: ➤ Scheduling Algorithms In Cloud Computing - An Extensive Survey
- Author: ➤ S. Saranya Devi ; V. Venkatesa Kumar ; M. Newlin Rajkumar
- Language: English
“Scheduling Algorithms In Cloud Computing - An Extensive Survey” Subjects and Themes:
- Subjects: Cloud computing - Scheduling - Electrical Engineering
Edition Identifiers:
- Internet Archive ID: ➤ 3SchedulingAlgorithmsInCloudComputingAnExtensiveSurvey_201808
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Source: The Open Library
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Available books for downloads and borrow from The Open Library
1Scheduling algorithms
By Peter Brucker

“Scheduling algorithms” Metadata:
- Title: Scheduling algorithms
- Author: Peter Brucker
- Language: English
- Number of Pages: Median: 365
- Publisher: Springer-Verlag - Springer
- Publish Date: ➤ 1995 - 1998 - 2001 - 2004 - 2007
- Publish Location: New York - Berlin
“Scheduling algorithms” Subjects and Themes:
- Subjects: ➤ Computer capacity - Planning - Production scheduling - Computer algorithms - Business logistics - Operations research
Edition Identifiers:
- The Open Library ID: OL3946433M - OL3302079M - OL799022M - OL356422M - OL9531092M
- Online Computer Library Center (OCLC) ID: 46866336 - 54081774 - 38590454 - 123378529 - 32893876
- Library of Congress Control Number (LCCN): 2004041732 - 2006940721 - 2001032273 - 95035255 - 98016264
- All ISBNs: ➤ 9783540415107 - 9783540641056 - 3540205241 - 3540415106 - 354069515X - 354064105X - 9783540695158 - 9783540600879 - 9783540205241 - 3540600876
Access and General Info:
- First Year Published: 1995
- Is Full Text Available: Yes
- Is The Book Public: No
- Access Status: Borrowable
Online Access
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