
Mathematical Systems Theory III by Diederich Hinrichsen
This is the third and final volume of Mathematical Systems Theory. Like the preceding volumes, it presents the mathematical foundations of systems and control theory in a self-contained, comprehensive, detailed, and mathematically rigorous manner. The exposition proceeds from the very general to the more specific, with rigorous mathematics complemented by numerous illustrations and explanatory remarks.
Volume III comprises two chapters and an appendix. In contrast to the first two volumes, only continuous-time systems are considered here. Chapter 9 addresses linear-quadratic optimal control and the Riccati equation, while Chapter 10 deals with zero dynamics and adaptive feedback regulation. Distinctive features include:
• a comprehensive treatment of the linear-quadratic optimal control problem
• a presentation of the bounded real and the Kalman–Yakubovich–Popov Lemma
• a systematic development of spectral factorization
• a study of the relative degree in state space and frequency domain
• a detailed exposition of the Byrnes–Isidori form and zero dynamics
• a development of the fundamentals of high-gain adaptive and funnel control.
The book combines the characteristics of a detailed introductory textbook with those of a reference source. The material should be accessible to mathematics students after two years of study, as well as to engineering students with a strong mathematical background. It will be of value to researchers in systems theory, as well as to mathematicians and engineers seeking to acquire a solid understanding of the mathematical foundations of the topics outlined above.
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Mathematical Models in Population Biology and Epidemiology
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Introduction to the Foundations of Applied Mathematics
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Introduction to Partial Differential Equations
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Differential Equations and Their Applications
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Theoretical Numerical Analysis
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Ordinary Differential Equations: Basics and Beyond
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Topology, Geometry and Gauge Fields
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Mathematical Systems Theory II
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Numerical Methods for Elliptic and Parabolic Partial Differential Equations
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Stochastic Tools in Mathematics and Science
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An Introduction to Delay Differential Equations with Applications to the Life Sciences
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A Mathematical Introduction to Fluid Mechanics
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Differential Equations: A Dynamical Systems Approach
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Partial Differential Equations with Numerical Methods
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An Introduction to Infinite-Dimensional Linear Systems Theory
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Introductory Functional Analysis
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Numerical Partial Differential Equations
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Mathematical Control Theory
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A Course on Integral Equations
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Numerical Methods for Fluid Dynamics
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Introduction to Applied Mathematics
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Dynamics and Bifurcations
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Computational Electromagnetics
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Introduction to the Theory of Stability
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Waves and Compressible Flow
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Calculus of Variations
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An Introduction to Modeling Neuronal Dynamics
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Approximation Theory and Algorithms for Data Analysis
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Mathematical Systems Theory I
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Ergodic Theory
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Introduction to Mechanics and Symmetry
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Analytical and Computational Methods of Advanced Engineering Mathematics
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Integral Transforms and Their Applications
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Modeling and Simulation in Medicine and the Life Sciences
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Numerical Partial Differential Equations: Finite Difference Methods
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Geometric Control of Mechanical Systems
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Scientific Computing with Ordinary Differential Equations
Diederich Hinrichsen is a retired Professor of Mathematical Systems Theory at the University of Bremen.
Anthony J. Pritchard († 2007) was Professor of Mathematics and founder and director of the Control Theory Centre at the University of Warwick.
Fritz Colonius is a retired Professor of Applied Mathematics at the University of Augsburg. His main research interest is the interplay of control theory and dynamical systems theory.
Tobias Damm is Professor for Systems and Control Theory at RPTU University Kaiserslautern-Landau. His research interests include linear algebra and numerical analysis and the application of these to control theory.
Achim Ilchmann held a chair in Applied Mathematics at the Technical University of Ilmenau until his retirement in 2022. His research interests include the algebraic theory of time-varying linear systems, adaptive control, and Baroque architecture.
Birgit Jacob has been with the University of Wuppertal, Germany, since 2010, where she is a full professor in analysis. Her current research interests include the area of infinite-dimensional systems and operator theory, particularly well-posed linear systems and port-Hamiltonian systems.
Fabian R. Wirth is Professor for Dynamical Systems at the University of Passau. His research interests include stability theory, switched systems, infinite-dimensional and large-scale systems.
| SKU | Unavailable |
| ISBN 13 | 9783032084002 |
| ISBN 10 | 3032084008 |
| Title | Mathematical Systems Theory III |
| Author | Diederich Hinrichsen |
| Series | Texts In Applied Mathematics |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2025-11-30 |
| Number of pages | 425 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |




































