Description
Offers an up-to-date, unified treatment of combinatorial algorithms to solve network flow problems for graduate students and professionals.
About the Author
David P. Williamson is a Professor at Cornell University, New York, in the School of Operations Research and Information Engineering. He has won several awards for his work in discrete optimization, including the 2000 Fulkerson Prize, sponsored by the American Mathematical Society and the Mathematical Programming Society. His previous book, The Design of Approximation Algorithms (Cambridge, 2011), co-authored with David B. Shmoys, won the 2013 INFORMS Lanchester Prize. He has served on several editor boards, and was editor-in-chief of the SIAM Journal on Discrete Mathematics. He is a Fellow of the ACM and of SIAM.
Reviews
'More than half a century since network flow theory was introduced by the 1962 book of L. R. Ford and D. R. Fulkerson, the area is still active and attractive. This book, based on course materials taught at Stanford and Cornell Universities, offers a concise and succinct description of most of the important topics, as well as covering recent developments. Its use in graduate courses related to algorithms and optimization is highly recommended.' Toshihide Ibaraki, Kyoto College of Graduate Studies for Informatics, Japan
'A succinct and very readable account of network flow algorithms covering the classics and the latest developments. The perfect book for a course on network flow algorithms and a reference for the state of the art. It will be a frequently used addition to my bookshelf.' Kurt Mehlhorn, Max-Planck-Institut fur Informatik
'The book includes many lemmas and theorems with proofs. It provides a succinct, amalgamated view of a broad mixture of effective combinatorial algorithms for network flow problems, including many topics not found in other textbooks ... I strongly recommend the book for students and researchers.' S. V. Nagaraj, SIGACT News
Book Information
ISBN 9781316636831
Author David P. Williamson
Format Paperback
Page Count 326
Imprint Cambridge University Press
Publisher Cambridge University Press
Weight(grams) 480g
Dimensions(mm) 227mm * 152mm * 19mm