Queueing Theory for Telecommunications 1: Discrete Time Modelling of a Single Node System1
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Synopsis
Queueing theory applications can be discovered in many walks of life including; transportation, manufacturing, telecommunications, computer systems and more. However, the most prevalent applications of queueing theory are in the telecommunications field. Queueing Theory for Telecommunications: Discrete Time Modelling of a Single Node System focuses on discrete time modeling and illustrates that most queueing systems encountered in real life can be set up as a Markov chain. This feature is very unique because the models are set in such a way that matrix-analytic methods are used to analyze them. Queueing Theory for Telecommunications: Discrete Time Modelling of a Single Node System is the most relevant book available on queueing models designed for applications to telecommunications. This book presents clear concise theories behind how to model and analyze key single node queues in discrete time using special tools that were presented in the second chapter. The text also delves into the types of single node queues that are very frequently encountered in telecommunication systems modeling, and provides simple methods for analyzing them. Where appropriate, alternative analysis methods are also presented. This book is for advanced-level students and researchers concentrating on engineering, computer science and mathematics as a secondary text or reference book. Professionals who work in the related industries of telecommunications, industrial engineering and communications engineering will find this book useful as well.
Book details
Published
01/08/2010
Publisher
Springer-Verlag New York Inc.
ISBN
9781441973139
This book can be found in...
Computing > Computer programming > Algorithms and procedures
Computing > Computer software packages > Computer graphics software
Computing > Applications of computing > Computer modelling and simulation
Computing > General theory of computing > Data structures
Computing > General theory of computing > Mathematical theory of computation
Computing > Internet > Network computers
Computing > General theory of computing > Systems analysis and design
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