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Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And Communications Network

Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And Communications Network

Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And
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Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And Communications Network Hardback - 2001

by Harold Kushner

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New/New. Brand New Original US Edition, Perfect Condition. Printed in English. Excellent Quality, Service and customer satisfaction guaranteed!
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Details

  • Title Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And Communications Network
  • Author Harold Kushner
  • Binding Hardback
  • Edition Us Edition
  • Condition New
  • Pages 515
  • Volumes 1
  • Language ENG
  • Publisher Springer, New York
  • Publication date 2001-06-08
  • Illustrated Yes
  • Features Bibliography, Illustrated, Index
  • Bookseller's Inventory # BIBNNA-156614
  • ISBN 9780387952642 / 0387952640
  • Weight 2.04 lbs (0.93 kg)
  • Dimensions 9.21 x 6.14 x 1.19 in (23.39 x 15.60 x 3.02 cm)
  • Category Mathematics
  • Library of Congress subjects Queuing theory
  • Library of Congress Catalogue Number 2001020202
  • Dewey Decimal Code 519.2
  • Quantity available 1

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Reader reviews for Heavy Traffic Analysis Of Controlled And Uncontrolled Queueing And Communications Network

From the publisher

There is great difficulty in solving the bulk of basic queueing problems without the use of the heavy traffic or some similar asymptotic approach. There is a wide range of applications in manufacturing, computer and communications networks, general queueing networks, assignment and scheduling etc. By bringing some of the latest methods to the attention of researchers in this timely and important area this comprehensive book should capture a broad audience.

First line

Example 1.1. A Simple Single Queue. In order to illustrate the idea of the diffusion approximation with minimal notation and in a way that allows us to relate it to the central limit theorem, let us start by considering a queueing problem with a single server, where the arrivals and service completions can take place at the integer times 0, 1, 2, . . . only.
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