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Robust Output LQ Optimal Control via Integral Sliding Modes

✍ Scribed by Leonid Fridman, Alexander Poznyak, Francisco Javier Bejarano (auth.)


Publisher
BirkhΓ€user Basel
Year
2014
Tongue
English
Leaves
150
Series
Systems & Control: Foundations & Applications
Edition
1
Category
Library

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✦ Synopsis


Featuring original research from well-known experts in the field of sliding mode control, this monograph presents new design schemes for implementing LQ control solutions in situations where the output system is the only information provided about the state of the plant. This new design works under the restrictions of matched disturbances without losing its desirable features. On the cutting-edge of optimal control research, Robust Output LQ Optimal Control via Integral Sliding Modes is an excellent resource for both graduate students and professionals involved in linear systems, optimal control, observation of systems with unknown inputs, and automatization.

In the theory of optimal control, the linear quadratic (LQ) optimal problem plays an important role due to its physical meaning, and its solution is easily given by an algebraic Riccati equation. This solution turns out to be restrictive, however, because of two assumptions: the system must be free from disturbances and the entire state vector must be known. A new technique, called output integral sliding modes, eliminates the effects of disturbances acting in the same subspace as the control. By using LQ-optimal control together with integral sliding modes, the former is made robust and based on output information only. Thus optimal control theory improves its applicability.

✦ Table of Contents


Front Matter....Pages i-xii
Introduction....Pages 1-8
Front Matter....Pages 9-9
Integral Sliding Mode Control....Pages 11-20
Observer Based on ISM....Pages 21-30
Output Integral Sliding Mode Based Control....Pages 31-41
Front Matter....Pages 43-43
The Robust Maximum Principle....Pages 45-57
Multimodel and ISM Control....Pages 59-75
Multiplant and ISM Output Control....Pages 77-93
Front Matter....Pages 95-95
Fault Detection....Pages 97-101
Stewart Platform....Pages 103-113
Magnetic Bearing....Pages 115-121
Back Matter....Pages 123-149

✦ Subjects


Systems Theory, Control; Control; Calculus of Variations and Optimal Control; Optimization; Appl.Mathematics/Computational Methods of Engineering; Engineering Design; Vibration, Dynamical Systems, Control


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