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Optimization by Simulated Annealing: An Experimental Evaluation; Part I, Graph Partitioning

Operations Research · 1989 · Vol. 37(6) · pp. 865–892
David S. JohnsonC. AragonLyle A. McGeochCatherine A. Schevon

Abstract

In this and two companion papers, we report on an extended empirical study of the simulated annealing approach to combinatorial optimization proposed by S. Kirkpatrick et al. That study investigated how best to adapt simulated annealing to particular problems and compared its performance to that of more traditional algorithms. This paper (Part I) discusses annealing and our parameterized generic implementation of it, describes how we adapted this generic algorithm to the graph partitioning problem, and reports how well it compared to standard algorithms like the Kernighan-Lin algorithm. (For sparse random graphs, it tended to outperform Kernighan-Lin as the number of vertices become large, even when its much greater running time was taken into account. It did not perform nearly so well, however, on graphs generated with a built-in geometric structure.) We also discuss how we went about optimizing our implementation, and describe the effects of changing the various annealing parameters or varying the basic annealing algorithm itself.

Advanced Graph Theory ResearchConstraint Satisfaction and OptimizationVLSI and FPGA Design TechniquesSimulated annealingParameterized complexityComputer scienceAdaptive simulated annealingGraphGraph partitionAnnealing (glass)Mathematical optimizationAlgorithmCombinatorial optimization
Citations
1,462
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References
Concepts of scale in simulated annealing
AIP conference proceedings · 1984 · 228 citations
Stochastic Relaxation, Gibbs Distributions, and the Bayesian Restoration of Images
IEEE Transactions on Pattern Analysis and Machine Intelligence · 1984 · 17,882 citations
Optimization by Simulated Annealing
Science · 1983 · 44,165 citations
Equation of State Calculations by Fast Computing Machines
The Journal of Chemical Physics · 1953 · 36,613 citations
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