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Black Box Optimization Benchmarking of the GLOBAL Method
Author(s) -
László Pál,
Tibor Csendes,
Mihály Csaba Markót,
Arnold Neumaier
Publication year - 2012
Publication title -
evolutionary computation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.732
H-Index - 82
eISSN - 1530-9304
pISSN - 1063-6560
DOI - 10.1162/evco_a_00089
Subject(s) - cluster analysis , global optimization , maxima and minima , solver , testbed , mathematical optimization , benchmarking , computer science , local search (optimization) , black box , mathematics , algorithm , artificial intelligence , mathematical analysis , computer network , marketing , business
GLOBAL is a multi-start type stochastic method for bound constrained global optimization problems. Its goal is to find the best local minima that are potentially global. For this reason it involves a combination of sampling, clustering, and local search. The role of clustering is to reduce the number of local searches by forming groups of points around the local minimizers from a uniformly sampled domain and to start few local searches in each of those groups. We evaluate the performance of the GLOBAL algorithm on the BBOB 2009 noiseless testbed, containing problems which reflect the typical difficulties arising in real-world applications. The obtained results are also compared with those obtained form the simple multi-start procedure in order to analyze the effects of the applied clustering rule. An improved parameterization is introduced in the GLOBAL method and the performance of the new procedure is compared with the performance of the MATLAB GlobalSearch solver by using the BBOB 2010 test environment.

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