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Bioinspired Computation in Combinatorial Optimization

Algorithms and Their Computational Complexity

Specificaties
Paperback, 216 blz. | Engels
Springer Berlin Heidelberg | 2010e druk, 2013
ISBN13: 9783642265846
Rubricering
Springer Berlin Heidelberg 2010e druk, 2013 9783642265846
Onderdeel van serie Natural Computing Series
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Bioinspired computation methods such as evolutionary algorithms and ant colony optimization are being applied successfully to complex engineering problems and to problems from combinatorial optimization, and with this comes the requirement to more fully understand the computational complexity of these search heuristics. This is the first textbook covering the most important results achieved in this area.

The authors study the computational complexity of bioinspired computation and show how runtime behavior can be analyzed in a rigorous way using some of the best-known combinatorial optimization problems -- minimum spanning trees, shortest paths, maximum matching, covering and scheduling problems. A feature of the book is the separate treatment of single- and multiobjective problems, the latter a domain where the development of the underlying theory seems to be lagging practical successes.

This book will be very valuable for teaching courses on bioinspired computation and combinatorial optimization. Researchers will also benefit as the presentation of the theory covers the most important developments in the field over the last 10 years. Finally, with a focus on well-studied combinatorial optimization problems rather than toy problems, the book will also be very valuable for practitioners in this field.

Specificaties

ISBN13:9783642265846
Taal:Engels
Bindwijze:paperback
Aantal pagina's:216
Uitgever:Springer Berlin Heidelberg
Druk:2010

Inhoudsopgave

Part I, Introduction: Bioinspired Computation.- Methods for Analysis.- Part II, Single-objective Optimization: Minimum Spanning Trees.- Eulerian Cycles.- Shortest Paths.- Maximum Matchings.- Vertex Cover.- Partition.- Part III, Multiobjective Optimization: Making Problems Easier Using Additional Objectives.- Minimum Spanning Trees.- Vertex Cover, Set Cover.- Multiobjective Minimum Spanning Trees

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        Bioinspired Computation in Combinatorial Optimization