9780898714852-0898714850-Linear Matrix Inequalities in System and Control Theory (Studies in Applied and Numerical Mathematics, Series Number 15)

Linear Matrix Inequalities in System and Control Theory (Studies in Applied and Numerical Mathematics, Series Number 15)

ISBN-13: 9780898714852
ISBN-10: 0898714850
Author: Stephen Boyd, Laurent El Ghaoui, Eric Feron, Venkataramanan Balakrishnan
Publication date: 1987
Publisher: Society for Industrial and Applied Mathematics
Format: Paperback 203 pages
Category: Engineering
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Book details

ISBN-13: 9780898714852
ISBN-10: 0898714850
Author: Stephen Boyd, Laurent El Ghaoui, Eric Feron, Venkataramanan Balakrishnan
Publication date: 1987
Publisher: Society for Industrial and Applied Mathematics
Format: Paperback 203 pages
Category: Engineering

Summary

Linear Matrix Inequalities in System and Control Theory (Studies in Applied and Numerical Mathematics, Series Number 15) (ISBN-13: 9780898714852 and ISBN-10: 0898714850), written by authors Stephen Boyd, Laurent El Ghaoui, Eric Feron, Venkataramanan Balakrishnan, was published by Society for Industrial and Applied Mathematics in 1987. With an overall rating of 3.8 stars, it's a notable title among other Engineering books. You can easily purchase or rent Linear Matrix Inequalities in System and Control Theory (Studies in Applied and Numerical Mathematics, Series Number 15) (Paperback) from BooksRun, along with many other new and used Engineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

In this book the authors reduce a wide variety of problems arising in system and control theory to a handful of convex and quasiconvex optimization problems that involve linear matrix inequalities. These optimization problems can be solved using recently developed numerical algorithms that not only are polynomial-time but also work very well in practice; the reduction therefore can be considered a solution to the original problems. This book opens up an important new research area in which convex optimization is combined with system and control theory, resulting in the solution of a large number of previously unsolved problems.

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