Limit this search to....

Production Planning by Mixed Integer Programming
Contributor(s): Pochet, Yves (Author), Wolsey, Laurence A. (Author)
ISBN: 144192132X     ISBN-13: 9781441921321
Publisher: Springer
OUR PRICE:   $85.49  
Product Type: Paperback - Other Formats
Published: November 2010
Qty:
Additional Information
BISAC Categories:
- Business & Economics | Operations Research
- Mathematics | Linear & Nonlinear Programming
- Technology & Engineering | Industrial Engineering
Dewey: 658.53
Series: Springer Operations Research and Financial Engineering
Physical Information: 1.05" H x 6.14" W x 9.21" (1.60 lbs) 500 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

This textbook provides a comprehensive modeling, reformulation and optimization approach for solving production planning and supply chain planning problems, covering topics from a basic introduction to planning systems, mixed integer programming (MIP) models and algorithms through the advanced description of mathematical results in polyhedral combinatorics required to solve these problems.

Based on twenty years worth of research in which the authors have played a significant role, the book addresses real life industrial production planning problems (involving complex production structures with multiple production stages) using MIP modeling and reformulation approach.

The book provides an introduction to MIP modeling and to planning systems, a unique collection of reformulation results, and an easy to use problem-solving library. This approach is demonstrated through a series of real life case studies, exercises and detailed illustrations.

Review by Jakub Marecek (Computer Journal) The emphasis put on mixed integer rounding and mixing sets, heuristics in-built in general purpose integer programming solvers, as well as on decompositions and heuristics using integer programming should be praised... There is no doubt that this volume offers the present best introduction to integer programming formulations of lotsizing problems, encountered in production planning. (2007)