Control of Discrete-Time Descriptor Systems

An Anisotropy-Based Approach

Nonfiction, Science & Nature, Science, Other Sciences, System Theory, Technology, Automation
Cover of the book Control of Discrete-Time Descriptor Systems by Alexey A. Belov, Olga G. Andrianova, Alexander P. Kurdyukov, Springer International Publishing
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Author: Alexey A. Belov, Olga G. Andrianova, Alexander P. Kurdyukov ISBN: 9783319784793
Publisher: Springer International Publishing Publication: April 25, 2018
Imprint: Springer Language: English
Author: Alexey A. Belov, Olga G. Andrianova, Alexander P. Kurdyukov
ISBN: 9783319784793
Publisher: Springer International Publishing
Publication: April 25, 2018
Imprint: Springer
Language: English

Control of Discrete-Time Descriptor Systems takes an anisotropy-based approach to the explanation of random input disturbance with an information-theoretic representation. It describes the random input signal more precisely, and the anisotropic norm minimization included in the book enables readers to tune their controllers better through the mathematical methods provided. The book contains numerous examples of practical applications of descriptor systems in various fields, from robotics to economics, and presents an information-theoretic approach to the mathematical description of coloured noise. Anisotropy-based analysis and design for descriptor systems is supplied along with proofs of basic statements, which help readers to understand the algorithms proposed, and to undertake their own numerical simulations.

   This book serves as a source of ideas for academic researchers and postgraduate students working in the control of discrete-time systems. The control design procedures outlined are numerically effective and easily implementable in MATLAB®

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Control of Discrete-Time Descriptor Systems takes an anisotropy-based approach to the explanation of random input disturbance with an information-theoretic representation. It describes the random input signal more precisely, and the anisotropic norm minimization included in the book enables readers to tune their controllers better through the mathematical methods provided. The book contains numerous examples of practical applications of descriptor systems in various fields, from robotics to economics, and presents an information-theoretic approach to the mathematical description of coloured noise. Anisotropy-based analysis and design for descriptor systems is supplied along with proofs of basic statements, which help readers to understand the algorithms proposed, and to undertake their own numerical simulations.

   This book serves as a source of ideas for academic researchers and postgraduate students working in the control of discrete-time systems. The control design procedures outlined are numerically effective and easily implementable in MATLAB®

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