Hybrid Feedback Control / / Ricardo G. Sanfelice.

A comprehensive introduction to hybrid control systems and designHybrid control systems exhibit both discrete changes, or jumps, and continuous changes, or flow. An example of a hybrid control system is the automatic control of the temperature in a room: the temperature changes continuously, but the...

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Superior document:Title is part of eBook package: De Gruyter EBOOK PACKAGE COMPLETE 2020 English
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Place / Publishing House:Princeton, NJ : : Princeton University Press, , [2021]
©2021
Year of Publication:2021
Language:English
Series:Princeton Series in Applied Mathematics ; 73
Online Access:
Physical Description:1 online resource (424 p.) :; 78 b/w illus. 1 table.
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Other title:Frontmatter --
Contents --
Preface --
List Of Symbols --
1 Introduction --
2 Modeling Framework --
3 Notions And Analysis Tools --
4 Uniting Control --
5 Event-Triggered Control --
6 Throw-Catch Control --
7 Synergistic Control --
8 Supervisory Control --
9 Passivity-Based Control --
10 Feedback Design Via Control Lyapunov Functions --
11 Invariants And Invariance-Based Control --
12 Temporal Logic --
Appendix A: Mathematical Review --
Appendix B: Proof Of The Hybrid Lyapunov Theorem --
Bibliography --
Index
Summary:A comprehensive introduction to hybrid control systems and designHybrid control systems exhibit both discrete changes, or jumps, and continuous changes, or flow. An example of a hybrid control system is the automatic control of the temperature in a room: the temperature changes continuously, but the control algorithm toggles the heater on or off intermittently, triggering a discrete jump within the algorithm. Hybrid control systems feature widely across disciplines, including biology, computer science, and engineering, and examples range from the control of cellular responses to self-driving cars. Although classical control theory provides powerful tools for analyzing systems that exhibit either flow or jumps, it is ill-equipped to handle hybrid control systems.In Hybrid Feedback Control, Ricardo Sanfelice presents a self-contained introduction to hybrid control systems and develops new tools for their analysis and design. Hybrid behavior can occur in one or more subsystems of a feedback system, and Sanfelice offers a unified control theory framework, filling an important gap in the control theory literature. In addition to the theoretical framework, he includes a plethora of examples and exercises, a Matlab toolbox (as well as two open-source versions), and an insightful overview at the beginning of each chapter.Relevant to dynamical systems theory, applied mathematics, and computer science, Hybrid Feedback Control will be useful to students and researchers working on hybrid systems, cyber-physical systems, control, and automation.
Format:Mode of access: Internet via World Wide Web.
ISBN:9780691189536
9783110704716
9783110704518
9783110704846
9783110704662
9783110739121
DOI:10.1515/9780691189536?locatt=mode:legacy
Access:restricted access
Hierarchical level:Monograph
Statement of Responsibility: Ricardo G. Sanfelice.