Sliding Mode Control and Observation

Sliding Mode Control and Observation
Author: Yuri Shtessel,Christopher Edwards,Leonid Fridman,Arie Levant
Publsiher: Springer Science & Business Media
Total Pages: 356
Release: 2013-06-01
Genre: Science
ISBN: 9780817648930

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The sliding mode control methodology has proven effective in dealing with complex dynamical systems affected by disturbances, uncertainties and unmodeled dynamics. Robust control technology based on this methodology has been applied to many real-world problems, especially in the areas of aerospace control, electric power systems, electromechanical systems, and robotics. Sliding Mode Control and Observation represents the first textbook that starts with classical sliding mode control techniques and progresses toward newly developed higher-order sliding mode control and observation algorithms and their applications. The present volume addresses a range of sliding mode control issues, including: *Conventional sliding mode controller and observer design *Second-order sliding mode controllers and differentiators *Frequency domain analysis of conventional and second-order sliding mode controllers *Higher-order sliding mode controllers and differentiators *Higher-order sliding mode observers *Sliding mode disturbance observer based control *Numerous applications, including reusable launch vehicle and satellite formation control, blood glucose regulation, and car steering control are used as case studies Sliding Mode Control and Observation is aimed at graduate students with a basic knowledge of classical control theory and some knowledge of state-space methods and nonlinear systems, while being of interest to a wider audience of graduate students in electrical/mechanical/aerospace engineering and applied mathematics, as well as researchers in electrical, computer, chemical, civil, mechanical, aeronautical, and industrial engineering, applied mathematicians, control engineers, and physicists. Sliding Mode Control and Observation provides the necessary tools for graduate students, researchers and engineers to robustly control complex and uncertain nonlinear dynamical systems. Exercises provided at the end of each chapter make this an ideal text for an advanced course taught in control theory.

Sliding Mode Control for Synchronous Electric Drives

Sliding Mode Control for Synchronous Electric Drives
Author: Sergey E. Ryvkin,Eduardo Palomar Lever
Publsiher: CRC Press
Total Pages: 208
Release: 2011-11-21
Genre: Technology & Engineering
ISBN: 9780203181386

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This volume presents the theory of control systems with sliding mode applied to electrical motors and power converters. It demonstrates the methodology of control design and the original algorithms of control and observation. Practically all semiconductor devices are used in power converters, that feed electrical motors, as power switches. A switch

Hybrid Dynamical Systems

Hybrid Dynamical Systems
Author: Mohamed Djemai,Michael Defoort
Publsiher: Springer
Total Pages: 332
Release: 2014-10-13
Genre: Technology & Engineering
ISBN: 9783319107950

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This book is a collection of contributions defining the state of current knowledge and new trends in hybrid systems – systems involving both continuous dynamics and discrete events – as described by the work of several well-known groups of researchers. Hybrid Dynamical Systems presents theoretical advances in such areas as diagnosability, observability and stabilization for various classes of system. Continuous and discrete state estimation and self-triggering control of nonlinear systems are advanced. The text employs various methods, among them, high-order sliding modes, Takagi–Sugeno representation and sampled-data switching to achieve its ends. The many applications of hybrid systems from power converters to computer science are not forgotten; studies of flexible-joint robotic arms and – as representative biological systems – the behaviour of the human heart and vasculature, demonstrate the wide-ranging practical significance of control in hybrid systems. The cross-disciplinary origins of study in hybrid systems are evident. Academic researchers and graduate students interested in hybrid and switched systems need look no further than Hybrid Dynamical Systems for a single source which will bring them up to date with work in this area from around the world.

Advances and Applications in Sliding Mode Control systems

Advances and Applications in Sliding Mode Control systems
Author: Ahmad Taher Azar,Quanmin Zhu
Publsiher: Springer
Total Pages: 590
Release: 2014-11-01
Genre: Technology & Engineering
ISBN: 9783319111735

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This book describes the advances and applications in Sliding mode control (SMC) which is widely used as a powerful method to tackle uncertain nonlinear systems. The book is organized into 21 chapters which have been organised by the editors to reflect the various themes of sliding mode control. The book provides the reader with a broad range of material from first principles up to the current state of the art in the area of SMC and observation presented in a clear, matter-of-fact style. As such it is appropriate for graduate students with a basic knowledge of classical control theory and some knowledge of state-space methods and nonlinear systems. The resulting design procedures are emphasized using Matlab/Simulink software.

Discrete Time Stochastic Sliding Mode Control Using Functional Observation

Discrete Time Stochastic Sliding Mode Control Using Functional Observation
Author: Satnesh Singh,S. Janardhanan
Publsiher: Springer Nature
Total Pages: 129
Release: 2019-11-25
Genre: Technology & Engineering
ISBN: 9783030328009

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This book extrapolates many of the concepts that are well defined for discrete-time deterministic sliding-mode control for use with discrete-time stochastic systems. It details sliding-function designs for various categories of linear time-invariant systems and its application for control. The resulting sliding-mode control addresses robustness issues and the functional-observer approach reduces the observer order substantially. Sliding-mode control (SMC) is designed for discrete-time stochastic systems, extended so that states lie within a specified band, and able to deal with incomplete information. Functional-observer-based SMC is designed for various clauses of stochastic systems: discrete-time; discrete-time with delay; state time-delayed; and those with parametric uncertainty. Stability considerations arising because of parametric uncertainty are taken into account and, where necessary, the effects of unmatched uncertainties mitigated. A simulation example is used to explain the use of the functional-observer approach to SMC design. Discrete-Time Stochastic Sliding-Mode Control Using Functional Observation will interest all researchers working in sliding-mode control and will be of particular assistance to graduate students in understanding the changes in design philosophy that arise when changing from continuous- to discrete-time systems. It helps to pave the way for further progress in applications of discrete-time SMC.

Sliding Mode Control

Sliding Mode Control
Author: Andrzej Bartoszewicz
Publsiher: BoD – Books on Demand
Total Pages: 560
Release: 2011-04-11
Genre: Science
ISBN: 9789533071626

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The main objective of this monograph is to present a broad range of well worked out, recent application studies as well as theoretical contributions in the field of sliding mode control system analysis and design. The contributions presented here include new theoretical developments as well as successful applications of variable structure controllers primarily in the field of power electronics, electric drives and motion steering systems. They enrich the current state of the art, and motivate and encourage new ideas and solutions in the sliding mode control area.

Modern Sliding Mode Control Theory

Modern Sliding Mode Control Theory
Author: Giorgio Bartolini,Leonid Fridman,Alessandro Pisano,Elio Usai
Publsiher: Springer
Total Pages: 468
Release: 2008-04-05
Genre: Technology & Engineering
ISBN: 9783540790167

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This concise book covers modern sliding mode control theory. The authors identify key contributions defining the theoretical and applicative state-of-the-art of the sliding mode control theory and the most promising trends of the ongoing research activities.

Recent Trends in Sliding Mode Control

Recent Trends in Sliding Mode Control
Author: Leonid Fridman,Jean-Pierre Barbot,Franck Plestan
Publsiher: IET
Total Pages: 439
Release: 2016-04-28
Genre: Technology & Engineering
ISBN: 9781785610769

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This book describes recent advances in the theory, properties, methods and applications of SMC, including a discussion about the advantages and disadvantages of different SMC algorithms.