Operator-Based Nonlinear Control Systems - Info and Reading Options
Design and Applications
By Mingcong Deng
"Operator-Based Nonlinear Control Systems" was published by Wiley & Sons, Incorporated, John in 2014 - New Jersey - Hoboken, New Jersey - [Piscataqay, New Jersey] :, the book is classified in bibliography genre, it has 280 pages and the language of the book is English.
“Operator-Based Nonlinear Control Systems” Metadata:
- Title: ➤ Operator-Based Nonlinear Control Systems
- Author: Mingcong Deng
- Language: English
- Number of Pages: 280
- Publisher: ➤ Wiley & Sons, Incorporated, John
- Publish Date: 2014
- Publish Location: ➤ New Jersey - Hoboken, New Jersey - [Piscataqay, New Jersey] :
- Genres: bibliography
- Dewey Decimal Classification: 629.8 629.836
- Library of Congress Classification: TJ213.D435 2013ebTJ213 .D435 2014eb
“Operator-Based Nonlinear Control Systems” Subjects and Themes:
- Subjects: Nonlinear control theory - Automatic control - SCIENCE / System Theory
Edition Specifications:
- Number of Pages: 1 online resource (495 p.)
Edition Identifiers:
- The Open Library ID: OL29174712M - OL21514874W
- Online Computer Library Center (OCLC) ID: 874149731
- Library of Congress Control Number (LCCN): 2013028439
- ISBN-13: 9781118819906
- All ISBNs: ➤ 9781118819906 - 9781118819814 - 1118819810 - 9781118813898 - 1118813898 - 111881990X
AI-generated Review of “Operator-Based Nonlinear Control Systems”:
"Operator-Based Nonlinear Control Systems" Table Of Contents:
- 1- 1 Introduction 1
- 2- 1.1 Definition of nonlinear systems 1
- 3- 1.2 Nonlinear systems dynamics analysis and control 1
- 4- 1.3 Why operator
- 5- ased nonlinear control system? 2
- 6- 1.4 An overview of the book 2
- 7- 1.5 Acknowledgments 3
- 8- 2 Robust right coprime factorization for nonlinear plants with uncertainties 5
- 9- 2.1 Preliminaries 5
- 10- 2.2 Operator theory 11
- 11- 3 Robust stability of operator
- 12- ased nonlinear control systems 27
- 13- 3.1 Concept of operator based robust stability 27
- 14- 3.2 Design methods of nonlinear systems with uncertainties 27
- 15- 3.3 Operator
- 16- ased robust anti
- 17- indup nonlinear feedback control systems design 38
- 18- 3.4 Operator
- 19- ased multi
- 20- nput and multi
- 21- utput(MIMO) nonlinear feedback control systems design 58
- 22- 3.5 Operator
- 23- ased time
- 24- arying delayed nonlinear feedback control systems design 110
- 25- 4 Tracking issues and fault detection issues in nonlinear control systems 121
- 26- 4.1 Operator
- 27- ased tracking compensator in nonlinear feedback control systems design 121
- 28- 4.2 Robust control for nonlinear systems with unknown perturbations using simplified robust right co
- 29- rime factorization 128
- 30- 4.3 Operator
- 31- ased actuator fault detection methods 146
- 32- 4.4 Operator
- 33- ased input command fault detection method in nonlinear feedback control systems 159
- 34- 5 Operator based nonlinear control systems with smart actuators 177
- 35- 5.1 Operator
- 36- ased robust nonlinear feedback control systems design for non
- 37- ymmetric backlash 177
- 38- 5.2 Operator
- 39- ased robust nonlinear feedback control systems design for symmetric and non
- 40- ymmetric hysteresis 190
- 41- 5.3 Operator
- 42- ased nonlinear feedback systems application for smart actuators 203
- 43- 6 Nonlinear feedback control to large scale systems using a distributed control system (DCS) device 247
- 44- 6.1 Introduction 247
- 45- 6.2 Multi
- 46- ank process modelling 249
- 47- 6.3 Robust right coprime factorization design and controller realization254
- 48- 6.4 Experimental results 260
- 49- 6.5 Summary 264
- 50- References 267
"Operator-Based Nonlinear Control Systems" Description:
Harvard Library:
"Control of nonlinear systems is a multidisciplinary field involving electrical engineering, computer science, and control engineering. This book develops a systematic methodology to understand a quantitative stability result, which is an important contributor to nonlinear control systems' stability and performance. It focuses on the operator-theoretic approach, providing examples on how to apply it to network controlled systems. Current research results and the future of the operator-theoretic approach are also examined. Control theory engineers and applied mathematicians will find this work especially rewarding"--
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