Routing, Flow, and Capacity Design in Communication and Computer Networks

Routing, Flow, and Capacity Design in Communication and Computer Networks

by Michal Pioro, Deep Medhi
Routing, Flow, and Capacity Design in Communication and Computer Networks

Routing, Flow, and Capacity Design in Communication and Computer Networks

by Michal Pioro, Deep Medhi

eBook

$67.99  $79.95 Save 15% Current price is $67.99, Original price is $79.95. You Save 15%.

Available on Compatible NOOK Devices and the free NOOK Apps.
WANT A NOOK?  Explore Now

Related collections and offers


Overview

In network design, the gap between theory and practice is woefully broad. This book narrows it, comprehensively and critically examining current network design models and methods. You will learn where mathematical modeling and algorithmic optimization have been under-utilized. At the opposite extreme, you will learn where they tend to fail to contribute to the twin goals of network efficiency and cost-savings. Most of all, you will learn precisely how to tailor theoretical models to make them as useful as possible in practice.Throughout, the authors focus on the traffic demands encountered in the real world of network design. Their generic approach, however, allows problem formulations and solutions to be applied across the board to virtually any type of backbone communication or computer network. For beginners, this book is an excellent introduction. For seasoned professionals, it provides immediate solutions and a strong foundation for further advances in the use of mathematical modeling for network design.
  • Written by leading researchers with a combined 40 years of industrial and academic network design experience.
  • Considers the development of design models for different technologies, including TCP/IP, IDN, MPLS, ATM, SONET/SDH, and WDM.
  • Discusses recent topics such as shortest path routing and fair bandwidth assignment in IP/MPLS networks.
  • Addresses proper multi-layer modeling across network layers using different technologies—for example, IP over ATM over SONET, IP over WDM, and IDN over SONET.
  • Covers restoration-oriented design methods that allow recovery from failures of large-capacity transport links and transit nodes.
  • Presents, at the end of each chapter, exercises useful to both students and practitioners.

Product Details

ISBN-13: 9780080516431
Publisher: Elsevier Science
Publication date: 07/21/2004
Series: ISSN
Sold by: Barnes & Noble
Format: eBook
Pages: 800
File size: 13 MB
Note: This product may take a few minutes to download.

About the Author

Michal Pióro heads the Department of Computer Networks and Switching at the Institute of Telecommunications at Warsaw University of Technology. He serves as professor there and also at the Department of Communication Systems at Lund University in Sweden.
Deep Medhi is Curators' Distinguished Professor in the Computer Science Electrical Engineering Department at the University of Missouri--Kansas City (UMKC), USA. Prior to joining UMKC in 1989, he was a member of the technical staff in the traffic network routing and design department at the AT&T Bell Laboratories. He is an honorary professor in the Computer Science&Engineering Department at the Indian Institute of Technology-Guwahati, India. He was an invited visiting professor at the Technical University of Denmark, a visiting research fellow at the Lund University, Sweden, a research visitor at Université Pierre et Marie Curie (UPMC), Paris, France, and a short-term visitor at Princeton University, Massachusetts Institute of Technology, and KTH Royal Institute of Technology, Sweden. He was also a Fulbright Senior Specialist. He was on the Brazilian Science Mobility Program with the University of Campinas, Brazil as his host institution. He serves as the editor-in-chief of Springer's Journal of Network&Systems Management, and is serving (or served) on the editorial board of IEEE Communications Surveys & Tutorials, IEEE Transactions on Network and Service Management, IEEE/ACM Transactions on Networking, Computer Networks, Telecommunication Systems, and IEEE Communications Magazine. He has served on the technical program committees of numerous conferences including IEEE INFOCOM, IEEE ICNP, IEEE NOMS, IEEE IM, IEEE CloudNet, ITC, and DRCN, while serving as the Technical Program Co-Chair of DRCN 2009, IEEE NOMS 2010, IFIP Networking 2014, IEEE CloudNet 2016. He received his B.Sc.(Hons.) in Mathematics from Cotton College, Gauhati University, India, his M.Sc. in Mathematics from St.Stephens College, University of Delhi, India, and both his M.S. and Ph.D. in Computer Sciences from the University of Wisconsin--Madison, USA. He has published over one hundred and fifty peer-reviewed papers, and is co-author of Routing, Flow, and Capacity Design in Communication and Computer Networks, also published by Elsevier (2004). He is an IEEE Fellow.

Table of Contents

ForewordPrefacePART I - INTRODUCTORY NETWORK DESIGNChapter 1 - OverviewChapter 2 - Network Design Problems—Notation and IllustrationsChapter 3 - Technology-Related Modeling ExamplesPART II - DESIGN MODELING AND METHODSChapter 4 - Network Design Problem ModelingChapter 5 - General Optimization Methods for Network DesignChapter 6 - Location and Topological DesignChapter 7 - Networks With Shortest-Path RoutingChapter 8 - Fair NetworksPART III - ADVANCED MODELSChapter 9 - Restoration and Protection Design of Resilient NetworksChapter 10 - Application of Optimization Techniques for Protection and Restoration DesignChapter 11 - Multi-Hour and Multi–Time-Period Network Modeling and DesignChapter 12 - Multi-Layer Networks: Modeling and DesignChapter 13 - Restoration Design of Single- and Multi-Layer Fair NetworksAPPENDICESAppendix A - Optimization Theory RefresherAppendix B - Introduction to Complexity Theory and NP-CompletenessAppendix C - Shortest-Path AlgorithmsAppendix D - Using LP/MIP PackagesList of AcronymsSolutions to Selected ExercisesBibliographyIndex

What People are Saying About This

From the Publisher

This book provides an all-important connection to the actual realities of designing a communication network for optimizing demand (traffic).

From the B&N Reads Blog

Customer Reviews