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In this book, two seemingly unrelated fields -- algebraic topology and robust control -- are brought together. The book develops algebraic/differential topology from an application-oriented point of view. The book takes the reader on a path starting from a well-motivated robust stability problem, showing the relevance of the simplicial approximation theorem and how it can be efficiently implemented using computational geometry. The simplicial approximation theorem serves as a primer to more serious topological issues such as the obstruction to extending the Nyquist map, K-theory of robust stabilization, and eventually the differential topology of the Nyquist map, culminating in the explanation of the lack of continuity of the stability margin relative to rounding errors. The book is suitable for graduate students in engineering and/or applied mathematics, academic researchers and governmental laboratories.
This book investigates the intersection of algebraic and differential topology with the practical challenges of robust control systems. Author Edmond A. Jonckheere, an expert in control theory, utilizes a rigorous mathematical framework to address the stability of systems subject to uncertainty. By bridging abstract topological concepts with engineering applications, the text provides a formal method for analyzing the continuity and stability margins of complex control maps.
What You Will Find
Experts identify this work as a specialized reference for graduate-level engineering and applied mathematics students. Readers frequently note the high level of technical density required to follow the author's synthesis of abstract topology and control engineering.
Page Count:
624
Publication Date:
1997-05-29
Publisher:
Oxford University Press
ISBN-10:
0195093011
ISBN-13:
9780195093018
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