A controlled migration genetic algorithm operator for hardware-in-the-loop experimentation

Journal article


Gladwin, Daniel, Stewart, Paul and Stewart, Jill 2011. A controlled migration genetic algorithm operator for hardware-in-the-loop experimentation. Engineering Applications of Artificial Intelligence. https://doi.org/10.1016/j.engappai.2011.01.006
AuthorsGladwin, Daniel, Stewart, Paul and Stewart, Jill
Abstract

In this paper, we describe the development of an extended migration operator, which combats the negative effects of noise on the effective search capabilities of genetic algorithms. The research is motivated by the need to minimize the num-ber of evaluations during hardware-in-the-loop experimentation, which can carry a significant cost penalty in terms of time or financial expense. The authors build on previous research, where convergence for search methods such as Simulated Annealing and Variable Neighbourhood search was accelerated by the implementation of an adaptive decision support operator. This methodology was found to be effective in searching noisy data surfaces. Providing that noise is not too significant, Genetic Al-gorithms can prove even more effective guiding experimentation. It will be shown that with the introduction of a Controlled Migration operator into the GA heuristic, data, which repre-sents a significant signal-to-noise ratio, can be searched with significant beneficial effects on the efficiency of hardware-in-the-loop experimentation, without a priori parameter tuning. The method is tested on an engine-in-the-loop experimental example, and shown to bring significant performance benefits.

KeywordsGenetic Algorithms; hardware in the loop
Year2011
JournalEngineering Applications of Artificial Intelligence
PublisherInternational Federation of Automatic Control
ISSN9521976
Digital Object Identifier (DOI)https://doi.org/10.1016/j.engappai.2011.01.006
Web address (URL)http://creativecommons.org/licenses/by/4.0/
hdl:10545/618809
Publication datesJun 2011
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Deposited25 Aug 2016, 11:26
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ContributorsUniversity of Sheffield
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