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Optimal Control Of Constrained Piecewise Affine Systems 2002 Edition at Meripustak

Optimal Control Of Constrained Piecewise Affine Systems 2002 Edition by FRANK J. CHRISTOPHERSEN, SPRINGER

Books from same Author: FRANK J. CHRISTOPHERSEN

Books from same Publisher: SPRINGER

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  • General Information  
    Author(s)FRANK J. CHRISTOPHERSEN
    PublisherSPRINGER
    ISBN9783540727002
    Pages196
    BindingSoftbound
    LanguageEnglish
    Publish YearSeptember 2007

    Description

    SPRINGER Optimal Control Of Constrained Piecewise Affine Systems 2002 Edition by FRANK J. CHRISTOPHERSEN

    One of the most important and challenging problems in control is the derivation of systematic tools for the computation of controllers for constrained nonlinear systems that can guarantee closed-loop stability, feasibility, and optimality with respect to someperformance index. This book focuses on the efficient and systematic computation of closed-form optimal controllers for the powerful class of fast-sampled constrained piecewise affine systems. These systems may exhibit rather complex behavior and are equivalent to many other hybrid system formalisms (combining continuous-valued dynamics with logic rules) reported in the literature. Furthermore, piecewise affinesystems are a useful modeling tool that can capture general nonlinearities (e.g. by local approximation), constraints, saturations, switches, and other hybrid modeling phenomena. The first part of the book presents an introduction to the mathematical and control theoretical background material needed for the full understanding of the book. The second part provides an in depth look at the computational and control theoretic properties of thecontrollers and part three presents different analysis and post-processing techniques. Background.- Mathematical Necessities.- Systems and Control Theory.- Receding Horizon Control.- Piecewise Affine Systems.- Optimal Control of Constrained Piecewise Affine Systems.- Constrained Finite Time Optimal Control.- Constrained Infinite Time Optimal Control.- Analysis and Post-Processing Techniques for Piecewise Affine Systems.- Linear Vector Norms as Lyapunov Functions.- Stability Analysis.- Stability Tubes.- Efficient Evaluation of Piecewise Control Laws Defined Over a Large Number of Polyhedra.



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