
Algorithmic Principles of Mathematical Programming
Springer (Publisher)
Published on 7. December 2010
Book
Paperback/Softback
X, 339 pages
978-90-481-6117-1 (ISBN)
Description
Algorithmic Principles of Mathematical Programming
investigates the mathematical structures and principles underlying the design of efficient algorithms for optimization problems. Recent advances in algorithmic theory have shown that the traditionally separate areas of discrete optimization, linear programming, and nonlinear optimization are closely linked. This book offers a comprehensive introduction to the whole subject and leads the reader to the frontiers of current research. The prerequisites to use the book are very elementary. All the tools from numerical linear algebra and calculus are fully reviewed and developed. Rather than attempting to be encyclopedic, the book illustrates the important basic techniques with typical problems. The focus is on efficient algorithms with respect to practical usefulness. Algorithmic complexity theory is presented with the goal of helping the reader understand the concepts without having to become a theoretical specialist. Further theory is outlined and supplemented with pointers to the relevant literature.
More details
Series
Edition
Softcover reprint of hardcover 1st ed. 2002
Language
English
Place of publication
Dordrecht
Netherlands
Target group
Professional and scholarly
Research
Illustrations
X, 339 p.
Dimensions
Height: 235 mm
Width: 155 mm
Thickness: 20 mm
Weight
534 gr
ISBN-13
978-90-481-6117-1 (9789048161171)
DOI
10.1007/978-94-015-9896-5
Schweitzer Classification
Other editions
Additional editions

Ulrich Faigle | W. Kern | G. Still
Algorithmic Principles of Mathematical Programming
Book
08/2002
Kluwer Academic Publishers
€106.99
Shipment within 15-20 days
Content
1. Real Vector Spaces.- 2. Linear Equations and Linear Inequalities.- 3. Polyhedra.- 4. Linear Programs and the Simplex Method.- 5. Lagrangian Duality.- 6. An Interior Point Algorithm for Linear Programs.- 7. Network Flows.- 8. Complexity.- 9. Integer Programming.- 10. Convex Sets and Convex Functions.- 11. Unconstrained Optimization.- 12. Constrained Nonlinear Optimization.- List of frequently used Symbols.