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Logic-Based Methods for Optimization - (Wiley Discrete Mathematics and Optimization) by John Hooker (Hardcover)
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About this item
Highlights
- Dieser Band untersucht die Rolle der Logik bei der Optimierung - Grundlage für eine neue Generation von Vorlesungen in diskreter Optimierung!
- About the Author: JOHN HOOKER, PhD, is Professor of Operations Research and T. Jerome Holleran Professor of Business Ethics and Social Responsibility at the Graduate School of Industrial Administration, Carnegie Mellon University.
- 520 Pages
- Mathematics, Discrete Mathematics
- Series Name: Wiley Discrete Mathematics and Optimization
Description
Book Synopsis
Dieser Band untersucht die Rolle der Logik bei der Optimierung - Grundlage für eine neue Generation von Vorlesungen in diskreter Optimierung! In ausgesprochen klarem, technisch sauberen Stil werden Tools und Techniken erläutert sowie vielfältige Programmieroptionen (ILOG, CPLEX, OPL, AMPL, GAMS und andere). Mit zahlreichen anschaulichen Beispielen. (07/00)From the Back Cover
A pioneering look at the fundamental role of logic in optimization and constraint satisfaction While recent efforts to combine optimization and constraint satisfaction have received considerable attention, little has been said about using logic in optimization as the key to unifying the two fields. Logic-Based Methods for Optimization develops for the first time a comprehensive conceptual framework for integrating optimization and constraint satisfaction, then goes a step further and shows how extending logical inference to optimization allows for more powerful as well as flexible modeling and solution techniques. Designed to be easily accessible to industry professionals and academics in both operations research and artificial intelligence, the book provides a wealth of examples as well as elegant techniques and modeling frameworks ready for implementation. Timely, original, and thought-provoking, Logic-Based Methods for Optimization:* Demonstrates the advantages of combining the techniques in problem solving
* Offers tutorials in constraint satisfaction/constraint programming and logical inference
* Clearly explains such concepts as relaxation, cutting planes, nonserial dynamic programming, and Bender's decomposition
* Reviews the necessary technologies for software developers seeking to combine the two techniques
* Features extensive references to important computational studies
* And much more
Review Quotes
"This is a book that should be widely read by graduate students and researchers in both the computer science and optimization communities." (Choice, Vol. 38, No. 7, March 2001)
"Goal is to broaden the conceptual foundations of optimization to include logical and constraint based approaches to traditional optimization methods." (American Mathematical Monthly, November 2001)
"The author combines a low-key, often conversational presentation with enthusiasm for a synthesis with traditional optimization methods..." (SIAM Review, Vol. 43, No. 4)
"The book is for practitioners as well as theorists" (Zentralblatt Math, Vol.974, No.24, 2001)
About the Author
JOHN HOOKER, PhD, is Professor of Operations Research and T. Jerome Holleran Professor of Business Ethics and Social Responsibility at the Graduate School of Industrial Administration, Carnegie Mellon University. Well-known for his work in the operations research/computer science interface, Dr. Hooker has published over 80 articles and coauthored (with Vijay Chandru) Optimization Methods for Logical Inference, also available from Wiley.Dimensions (Overall): 9.6 Inches (H) x 5.92 Inches (W) x 1.19 Inches (D)
Weight: 1.83 Pounds
Suggested Age: 22 Years and Up
Number of Pages: 520
Genre: Mathematics
Sub-Genre: Discrete Mathematics
Series Title: Wiley Discrete Mathematics and Optimization
Publisher: Wiley-Interscience
Format: Hardcover
Author: John Hooker
Language: English
Street Date: May 30, 2000
TCIN: 1002210362
UPC: 9780471385219
Item Number (DPCI): 247-26-9034
Origin: Made in the USA or Imported
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Shipping details
Estimated ship dimensions: 1.19 inches length x 5.92 inches width x 9.6 inches height
Estimated ship weight: 1.83 pounds
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