Details

Max-Plus Linear Stochastic Systems and Perturbation Analysis


Max-Plus Linear Stochastic Systems and Perturbation Analysis


The International Series on Discrete Event Dynamic Systems, Band 15

von: Bernd F. Heidergott

171,19 €

Verlag: Springer
Format: PDF
Veröffentl.: 26.12.2006
ISBN/EAN: 9780387389950
Sprache: englisch
Anzahl Seiten: 320

Dieses eBook enthält ein Wasserzeichen.

Beschreibungen

<P>During the last decade, the area of stochastic max-plus linear systems has witnessed a rapid development, which created a growing interest in this area. This book provides a thorough treatment of the theory of stochastic max-plus linear systems. Max-plus algebra is an algebraic approach to discrete event systems (DES), like queuing networks that are prone to synchronization. Perturbation analysis studies the sensitivity of the performance of DES with respect to changes in a particular system parameter.</P>
<P>The first part of the book addresses modeling issues and stability theory for stochastic max-plus systems. The second part of the book treats perturbation analysis of max-plus systems: a calculus for differentiation of max-plus systems is developed. This calculus leads to numerical evaluations of performance indices of max-plus linear stochastic systems, such as the Lyapunov exponent or waiting times.</P>
Max-Plus Algebra.- Max-Plus Linear Stochastic Systems.- Ergodic Theory.- Perturbation Analysis.- A Max-Plus Differential Calculus.- Higher-Order D-Derivatives.- Taylor Series Expansions.
<P>During the last decade, the area of stochastic max-plus linear systems has witnessed a rapid development, which created a growing interest in this area. This book provides a thorough treatment of the theory of stochastic max-plus linear systems. Max-plus algebra is an algebraic approach to discrete event systems (DES), like queuing networks that are prone to synchronization. Perturbation analysis studies the sensitivity of the performance of DES with respect to changes in a particular system parameter. </P>
<P>The first part of the book addresses modeling issues and stability theory for stochastic max-plus systems. The second part of the book treats perturbation analysis of max-plus systems: a calculus for differentiation of max-plus systems is developed. This calculus leads to numerical evaluations of performance indices of max-plus linear stochastic systems, such as the Lyapunov exponent or waiting times.</P>
<P>This book will be of interest to researchers and professionals in the area of applied probability who are interested in numerical evaluation of stochastic max-plus linear discrete event systems.</P>
Contains the most recent research results on stochastic max-plus systems No other book attempts to address the interplay between perturbation analysis and max-plus systems Includes supplementary material: sn.pub/extras

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