Robust Control for Discrete-Time Markovian Jump Systems in the Finite-Time Domain

This book provides robust analysis and synthesis tools for Markovian jump systems in the finite-time domain with specified performances. It explores how these tools can make the systems more applicable to fields such as economic systems, ecological systems and solar thermal central receivers, by lim...

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Bibliographic Details
Main Authors: Luan, Xiaoli, He, Shuping (Author), Liu, Fei (Author)
Format: eBook
Language:English
Published: Cham Springer International Publishing 2023, 2023
Edition:1st ed. 2023
Series:Lecture Notes in Control and Information Sciences
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Robust Control for Discrete-Time Markovian Jump Systems in the Finite-Time Domain  |h Elektronische Ressource  |c by Xiaoli Luan, Shuping He, Fei Liu 
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505 0 |a 1. Introduction -- 2. Finite-Time Stability and Stabilization for Discrete-Time Jumping Systems -- 3. Finite-Time Stability and Stabilization for Jumping Systems Governed by Deterministic Switches -- 4. Finite-Time Stability and Stabilization for Jumping Systems with Non-Homogenous Transition Probabilities -- 5. Finite-Time H-Infinity Control for Multi-Mode Jumping Systems -- 6. Sliding Mode Control for Jumping Systems in Finite Time Domain -- 7. Finite-Time Multiple Frequency Control for Jumping Systems Based on De-Randomization -- 8. Self-Triggered Finite-Time Control for Multi-Mode Jumping Systems -- 9. High-Order Moment Stabilization for Jumping Systems in Finite Time Domain -- 10. Conclusion 
653 |a System Robustness 
653 |a Stochastic Systems and Control 
653 |a Control and Systems Theory 
653 |a Control theory 
653 |a Systems Theory, Control 
653 |a System theory 
653 |a Control engineering 
653 |a Stochastic processes 
653 |a Robust statistics 
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700 1 |a Liu, Fei  |e [author] 
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520 |a This book provides robust analysis and synthesis tools for Markovian jump systems in the finite-time domain with specified performances. It explores how these tools can make the systems more applicable to fields such as economic systems, ecological systems and solar thermal central receivers, by limiting system trajectories in the desired bound in a given time interval. Robust Control for Discrete-Time Markovian Jump Systems in the Finite-Time Domain focuses on multiple aspects of finite-time stability and control, including: finite-time H-infinity control; finite-time sliding mode control; finite-time multi-frequency control; finite-time model predictive control; and high-order moment finite-time control for multi-mode systems and also provides many methods and algorithms to solve problems related to Markovian jump systems with simulation examples that illustrate the design procedure and confirm the results of the methods proposed. The thorough discussion of these topics makes the book a useful guide for researchers, industrial engineers and graduate students alike, enabling them systematically to establish the modeling, analysis and synthesis for Markovian jump systems in the finite-time domain