9783319288468-3319288466-Analysis and Design of Markov Jump Systems with Complex Transition Probabilities (Studies in Systems, Decision and Control, 54)

Analysis and Design of Markov Jump Systems with Complex Transition Probabilities (Studies in Systems, Decision and Control, 54)

ISBN-13: 9783319288468
ISBN-10: 3319288466
Edition: 1st ed. 2016
Author: Lixian Zhang, Yanzheng Zhu, Peng Shi, Ting Yang
Publication date: 2016
Publisher: Springer
Format: Hardcover 279 pages
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Book details

ISBN-13: 9783319288468
ISBN-10: 3319288466
Edition: 1st ed. 2016
Author: Lixian Zhang, Yanzheng Zhu, Peng Shi, Ting Yang
Publication date: 2016
Publisher: Springer
Format: Hardcover 279 pages

Summary

Analysis and Design of Markov Jump Systems with Complex Transition Probabilities (Studies in Systems, Decision and Control, 54) (ISBN-13: 9783319288468 and ISBN-10: 3319288466), written by authors Lixian Zhang, Yanzheng Zhu, Peng Shi, Ting Yang, was published by Springer in 2016. With an overall rating of 3.8 stars, it's a notable title among other books. You can easily purchase or rent Analysis and Design of Markov Jump Systems with Complex Transition Probabilities (Studies in Systems, Decision and Control, 54) (Hardcover) from BooksRun, along with many other new and used books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

The book addresses the control issues such as stability analysis, control synthesis and filter design of Markov jump systems with the above three types of TPs, and thus is mainly divided into three parts. Part I studies the Markov jump systems with partially unknown TPs. Different methodologies with different conservatism for the basic stability and stabilization problems are developed and compared. Then the problems of state estimation, the control of systems with time-varying delays, the case involved with both partially unknown TPs and uncertain TPs in a composite way are also tackled. Part II deals with the Markov jump systems with piecewise homogeneous TPs. Methodologies that can effectively handle control problems in the scenario are developed, including the one coping with the asynchronous switching phenomenon between the currently activated system mode and the controller/filter to be designed. Part III focuses on the Markov jump systems with memory TPs. The concept of σ-mean square stability is proposed such that the stability problem can be solved via a finite number of conditions. The systems involved with nonlinear dynamics (described via the Takagi-Sugeno fuzzy model) are also investigated. Numerical and practical examples are given to verify the effectiveness of the obtained theoretical results. Finally, some perspectives and future works are presented to conclude the book.

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