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Nonlinear Assignment Problems

Algorithms and Applications

Specificaties
Gebonden, 304 blz. | Engels
Springer US | 2001e druk, 2000
ISBN13: 9780792366461
Rubricering
Springer US 2001e druk, 2000 9780792366461
Onderdeel van serie Combinatorial Optimization
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Nonlinear Assignment Problems (NAPs) are natural extensions of the classic Linear Assignment Problem, and despite the efforts of many researchers over the past three decades, they still remain some of the hardest combinatorial optimization problems to solve exactly. The purpose of this book is to provide in a single volume, major algorithmic aspects and applications of NAPs as contributed by leading international experts.
The chapters included in this book are concerned with major applications and the latest algorithmic solution approaches for NAPs. Approximation algorithms, polyhedral methods, semidefinite programming approaches and heuristic procedures for NAPs are included, while applications of this problem class in the areas of multiple-target tracking in the context of military surveillance systems, of experimental high energy physics, and of parallel processing are presented.
Audience: Researchers and graduate students in the areas of combinatorial optimization, mathematical programming, operations research, physics, and computer science.

Specificaties

ISBN13:9780792366461
Taal:Engels
Bindwijze:gebonden
Aantal pagina's:304
Uitgever:Springer US
Druk:2001

Inhoudsopgave

1 Multi Index Assignment Problems: Complexity, Approximation, Applications.- 2 MD Assignment of Data Association.- 3 Target-Based Weapon Target Assignment Problems.- 4 The Nonlinear Assignment Problem in Experimental High Energy Physics.- 5 Three Index Assignment Problem.- 6 Polyhedral Methods for the QAP.- 7 Semidefinite Programming Approaches to the Quadratic Assignment Problem.- 8 Heuristics for Nonlinear Assignment Problems.- 9 Symbolic Scheduling of Parameterized Task Graphs on Parallel Machines.- 10 Decomposition Algorithms for Communication Minimization in Parallel Computing.

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