This monograph is concerned with the design of feedback controllers for linear multivariable systems, which are robust to system uncertainty. System uncertainty can be realistically represented by including perturbations with bounded H?-norm, and this is the approach taken here. For a given H?-norm bound, there is a family of robustly stabilizing controllers, and the central question in this book is which of these controllers to choose.
One choice to take is that which minimizes the enthropy of the resulting closed loop transfer function, and the derivation and properties of this solution occupies most of this monograph. Explicit formulae are obtained for the minimum enthropy solution, which is a precisely defined compromise between the Linear Quadratic Gaussian optimal solution and the H?-optimal solution.
The book will be appropriate for graduate classes requiring only a first course in state-space methods, and some elementary knowledge of H? control and Linear Quadratic Gaussian control.
| ISBN: | 9783540529477 |
| Publication date: | 22nd October 1990 |
| Author: | Denis Mustafa, Keith Glover |
| Publisher: | Springer an imprint of Springer Berlin Heidelberg |
| Format: | Paperback |
| Pagination: | 144 pages |
| Series: | Lecture Notes in Control and Information Sciences |
| Genres: |
Automatic control engineering Automotive technology and trades Maths for engineers |
This monograph is concerned with the design of feedback controllers for linear multivariable systems, which are robust to system uncertainty. System uncertainty can be realistically represented by including perturbations with bounded H?-norm, and this is the approach taken here.
Minimum Entropy H_ Control features in the following genres: Automatic control engineering, Automotive technology and trades, Maths for engineers
Paperback. Not Available.
Minimum Entropy H_ Control was written by Denis Mustafa, Keith Glover and published by Springer an imprint of Springer Berlin Heidelberg
Minimum Entropy H_ Control has 144 pages
Yes it is part of Lecture Notes in Control and Information Sciences series