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πŸ“

Time-Dependent Switched Discrete-Time Linear Systems: Control and Filtering

✍ Scribed by Lixian Zhang, Yanzheng Zhu, Peng Shi, Qiugang Lu (auth.)


Publisher
Springer International Publishing
Year
2016
Tongue
English
Leaves
268
Series
Studies in Systems, Decision and Control 53
Edition
1
Category
Library

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✦ Synopsis


This book focuses on the basic control and filtering synthesis problems for discrete-time switched linear systems under time-dependent switching signals. Chapter 1, as an introduction of the book, gives the backgrounds and motivations of switched systems, the definitions of the typical time-dependent switching signals, the differences and links to other types of systems with hybrid characteristics and a literature review mainly on the control and filtering for the underlying systems. By summarizing the multiple Lyapunov-like functions (MLFs) approach in which different requirements on comparisons of Lyapunov function values at switching instants, a series of methodologies are developed for the issues on stability and stabilization, and l2-gain performance or tube-based robustness for l∞ disturbance, respectively, in Chapters 2 and 3. Chapters 4 and 5 are devoted to the control and filtering problems for the time-dependent switched linear systems with either polytopic uncertainties or measurable time-varying parameters in different sense of disturbances. The asynchronous switching problem, where there is time lag between the switching of the currently activated system mode and the controller/filter to be designed, is investigated in Chapter 6. The systems with various time delays under typical time-dependent switching signals are addressed in Chapter 7.

✦ Table of Contents


Front Matter....Pages i-xiv
Introduction....Pages 1-26
Stability and Stabilization....Pages 27-58
Performance Analysis....Pages 59-85
Control....Pages 87-125
Filtering....Pages 127-161
Asynchronous Switched Systems: ADT Switching....Pages 163-204
Time-Delay Switched Systems....Pages 205-255
Back Matter....Pages 257-258

✦ Subjects


Control; Complexity; Systems Theory, Control; Nonlinear Dynamics


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