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Chain-Scattering Approach to H ∞ Control

✍ Scribed by Hidenori Kimura (auth.)


Publisher
BirkhΓ€user Basel
Year
1997
Tongue
English
Leaves
254
Series
Modern Birkhauser classics
Edition
1
Category
Library

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✦ Synopsis


The advent of H∞-control was a truly remarkable innovation in multivariable theory. It eliminated the classical/modern dichotomy that had been a major source of the long-standing skepticism about the applicability of modern control theory, by amalgamating the "philosophy" of classical design with "computation" based on the state-space problem setting. It enhanced the application by deepening the theory mathematically and logically, not by weakening it as was done by the reformers of modern control theory in the early 1970s.

The purpose of this book is to provide a natural theoretical framework that is understandable with little mathematical background. The notion of chain-scattering, well known in classical circuit theory, but new to control theorists, plays a fundamental role in this book. It captures an essential feature of the control systems design, reducing it to a J-lossless factorization, which leads naturally to the idea of H∞-control. The J-lossless conjugation, an essentially new notion in linear system theory, then provides a powerful tool for computing this factorization. Thus the chain-scattering representation, the J-lossless factorization, and the J-lossless conjugation are the three key notions that provide the thread of development in this book. The book is completely self contained and requires little mathematical background other than some familiarity with linear algebra.

Reviews:

The book is useful to praciticing engineers in control system design and as a text for a graduate course in H∞-control and its applications. β€”Zentralblatt MATH

H. Kimura's textbook is a useful source of information for everybody who wants to learn this part of modern control theory in a thorough manner. β€”Mathematica Bohemica

The book provides a quite complete picture of the chain-scattering techniques for the solution of conjugation, factorization and control problems. It somehow complements other books on similar arguments. Therefore, it is intended for graduate students willing to understand the differences between various theoretical approaches to H∞-control, as well as to refresh the underlying historical background and similarities with other connected scientific disciplines. β€”IEEE Transactions on Automatic Control

✦ Table of Contents


Front Matter....Pages i-xii
Introduction....Pages 1-10
Elements of Linear System Theory....Pages 11-35
Norms and Factorizations....Pages 37-65
Chain-Scattering Representations of the Plant....Pages 67-105
J -Lossless Conjugation and Interpolation....Pages 107-127
J -Lossless Factorizations....Pages 129-158
H ∞ Control via ( J, J β€²)-Lossless Factorization....Pages 159-184
State-Space Solutions to H ∞ Control Problems....Pages 185-220
Structure of H ∞ Control....Pages 221-235
Back Matter....Pages 237-246

✦ Subjects


Systems Theory, Control; Control; Linear and Multilinear Algebras, Matrix Theory; Appl.Mathematics/Computational Methods of Engineering; Applications of Mathematics


πŸ“œ SIMILAR VOLUMES


Chain-Scattering Approach to H∞ Control
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Chain-Scattering Approach to H ∞ Control
✍ Hidenori Kimura (auth.) πŸ“‚ Library πŸ“… 1997 πŸ› BirkhΓ€user Basel 🌐 English

<p><p>The advent of H∞-control was a truly remarkable innovation in multivariable theory. It eliminated the classical/modern dichotomy that had been a major source of the long-standing skepticism about the applicability of modern control theory, by amalgamating the "philosophy" of classical design w

Chain-Scattering Approach to H ∞ Control
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1 Introduction.- 2 Elements of Linear Systems Theory.- 3 Norms and Factorizations.- 4 Chain-Scattering Representations of the Plant.- 5 J-Lossless Conjugation and Interpolation.- 6 J-Lossless Factorizations.- 7 H-infinity Control via (J, J')-Lossless Factorization.- 8 State-Space Solutions to H-inf

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Non-monotonic Approach to Robust H∞ Control of Multi-model Systems focuses on robust analysis and synthesis problems for multi-model systems based on the non-monotonic Lyapunov Functionals (LFs) approach that enlarges the stability region and improves control performance. By fully considering the di