Scinovex
articleTop 1% cited

Optimization by Simulated Annealing: An Experimental Evaluation; Part II, Graph Coloring and Number Partitioning

Operations Research · 1991 · Vol. 39(3) · pp. 378–406
David S. JohnsonC. AragonLyle A. McGeochCatherine A. Schevon

Abstract

This is the second in a series of three papers that empirically examine the competitiveness of simulated annealing in certain well-studied domains of combinatorial optimization. Simulated annealing is a randomized technique proposed by S. Kirkpatrick, C. D. Gelatt and M. P. Vecchi for improving local optimization algorithms. Here we report on experiments at adapting simulated annealing to graph coloring and number partitioning, two problems for which local optimization had not previously been thought suitable. For graph coloring, we report on three simulated annealing schemes, all of which can dominate traditional techniques for certain types of graphs, at least when large amounts of computing time are available. For number partitioning, simulated annealing is not competitive with the differencing algorithm of N. Karmarkar and R. M. Karp, except on relatively small instances. Moreover, if running time is taken into account, natural annealing schemes cannot even outperform multiple random runs of the local optimization algorithms on which they are based, in sharp contrast to the observed performance of annealing on other problems.

Constraint Satisfaction and OptimizationScheduling and Timetabling SolutionsAdvanced Graph Theory ResearchSimulated annealingGraph coloringComputer scienceAnnealing (glass)Combinatorial optimizationGraphMathematical optimizationAdaptive simulated annealingAlgorithmMathematics
Citations
838
FWCI
27.15
field-weighted impact
References
28
Percentile
100%
vs. same field & year
Citations per year
References
Optimization by Simulated Annealing
Science · 1983 · 44,165 citations
An Effective Heuristic Algorithm for the Traveling-Salesman Problem
Operations Research · 1973 · 3,765 citations
New methods to color the vertices of a graph
Communications of the ACM · 1979 · 1,553 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.