Difference and Differential Equations with Applications in Queueing Theory

Difference and Differential Equations with Applications in Queueing Theory by Aliakbar Montazer Haghighi is published by John Wiley & Sons on July 10, 2013, and spans 424 pages. This book explores the connections between differential equations, difference equations, and queueing models, providing a thorough discussion of their applications in various fields such as telecommunications, traffic engineering, and computing.
Readers will find a comprehensive examination of stochastic processes, particularly in queueing theory, along with essential fundamentals in probability and statistics. The text includes discussions on various queue models, such as single-server and multiple-server systems, and features exercises at the end of each chapter to reinforce learning. This edition serves as a valuable resource for researchers and practitioners in applied mathematics and engineering, as well as for upper-undergraduate and graduate-level courses.
Official synopsis Publisher
A Useful Guide to the Interrelated Areas of Differential Equations, Difference Equations, and Queueing Models
Difference and Differential Equations with Applications in Queueing Theory presents the unique connections between the methods and applications of differential equations, difference equations, and Markovian queues. Featuring a comprehensive collection of topics that are used in stochastic processes, particularly in queueing theory, the book thoroughly discusses the relationship to systems of linear differential difference equations.
The book demonstrates the applicability that queueing theory has in a variety of fields including telecommunications, traffic engineering, computing, and the design of factories, shops, offices, and hospitals. Along with the needed prerequisite fundamentals in probability, statistics, and Laplace transform, Difference and Differential Equations with Applications in Queueing Theory provides:
- A discussion on splitting, delayed-service, and delayed feedback for single-server, multiple-server, parallel, and series queue models
- Applications in queue models whose solutions require differential difference equations and generating function methods
- Exercises at the end of each chapter along with select answers
The book is an excellent resource for researchers and practitioners in applied mathematics, operations research, engineering, and industrial engineering, as well as a useful text for upper-undergraduate and graduate-level courses in applied mathematics, differential and difference equations, queueing theory, probability, and stochastic processes.
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