Robust Output Lq Optimal Control Via Integral Sliding Modes


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Robust Output LQ Optimal Control via Integral Sliding Modes


Robust Output LQ Optimal Control via Integral Sliding Modes

Author: Leonid Fridman

language: en

Publisher: Springer

Release Date: 2014-07-08


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Featuring original research from well-known experts in the field of sliding mode control, this book presents new design schemes for a useful and practical optimal control with very few impractical assumptions. The results presented allow optimal control theory to grow in its applicability to real-world systems. On the cutting-edge of optimal control research, this book is an excellent resource for both graduate students and researchers in engineering, mathematics, and optimal control.

New Perspectives and Applications of Modern Control Theory


New Perspectives and Applications of Modern Control Theory

Author: Julio B. Clempner

language: en

Publisher: Springer

Release Date: 2017-09-30


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This edited monograph contains research contributions on a wide range of topics such as stochastic control systems, adaptive control, sliding mode control and parameter identification methods. The book also covers applications of robust and adaptice control to chemical and biotechnological systems. This collection of papers commemorates the 70th birthday of Dr. Alexander S. Poznyak.

Road Map for Sliding Mode Control Design


Road Map for Sliding Mode Control Design

Author: Vadim Utkin

language: en

Publisher: Springer Nature

Release Date: 2020-04-13


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This book is devoted to control of finite and infinite dimensional processes with continuous-time and discrete time control, focusing on suppression problems and new methods of adaptation applicable for systems with sliding motions only. Special mathematical methods are needed for all the listed control tasks. These methods are addressed in the initial chapters, with coverage of the definition of the multidimensional sliding modes, the derivation of the differential equations of those motions, and the existence conditions. Subsequent chapters discusses various areas of further research. The book reflects the consensus view of the authors regarding the current status of SMC theory. It is addressed to a broad spectrum of engineers and theoreticians working in diverse areas of control theory and applications. It is well suited for use in graduate and postgraduate courses in such university programs as Electrical Engineering, Control of Nonlinear Systems, and Mechanical Engineering.