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Linear Systems and Control: An Operator Perspective: Chapman & Hall/CRC Pure and Applied Mathematics

Editat de Martin J. Corless, Art Frazho
en Limba Engleză Hardback – 27 mar 2003
Based largely on state space models, this text/reference utilizes fundamental linear algebra and operator techniques to develop classical and modern results in linear systems analysis and control design. It presents stability and performance results for linear systems, provides a geometric perspective on controllability and observability, and develops state space realizations of transfer functions. It also studies stabilizability and detectability, constructs state feedback controllers and asymptotic state estimators, covers the linear quadratic regulator problem in detail, introduces H-infinity control, and presents results on Hamiltonian matrices and Riccati equations.
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Specificații

ISBN-13: 9780824707293
ISBN-10: 082470729X
Pagini: 360
Dimensiuni: 152 x 229 x 21 mm
Greutate: 0.68 kg
Ediția:New.
Editura: CRC Press
Colecția CRC Press
Seria Chapman & Hall/CRC Pure and Applied Mathematics

Locul publicării:Boca Raton, United States

Public țintă

Professional

Cuprins

Systems and control; stability; Lyapunov theory; least squares; observability; controllability; controllable and observable realizations; realization theory; state feedback; state estimators; output feedback controllers; zeros and constant output tracking; linear quadratic regulators; H analysis; H control.

Recenzii

"The content of this book is well structured and it well balances the different aspects of the theory. If the reviewer had to quantify this volume with one work, he would say 'classical'."
- Zentralblatt MATH, Vol. 1050

Descriere

Based largely on state space models, this text/reference utilizes fundamental linear algebra and operator techniques to develop classical and modern results in linear systems analysis and control design. It presents stability and performance results for linear systems, provides a geometric perspective on controllability and observability, and develops state space realizations of transfer functions. It also studies stabilizability and detectability, constructs state feedback controllers and asymptotic state estimators, covers the linear quadratic regulator problem in detail, introduces H-infinity control, and presents results on Hamiltonian matrices and Riccati equations.