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A SUPERVISED LEARNING APPROACH INVOLVING ACTIVE SUBSPACES FOR AN EFFICIENT GENETIC ALGORITHM IN HIGH-DIMENSIONAL OPTIMIZATION PROBLEMS

delete2021-06-29
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OA
AI
N
Nicola Demo *
M
Marco Tezzele
G
Gianluigi Rozza
DOI:10.1137/20M1345219delete
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Abstract

Abstract

En 中文
In this work, we present an extension of genetic algorithm (GA) which exploits the supervised learning technique called active subspaces (AS) to evolve the individuals on a lowerdimensional space. In many cases, GA requires in fact more function evaluations than other optimization methods to converge to the global optimum. Thus, complex and high-dimensional functions can end up extremely demanding (from the computational point of view) to be optimized with the standard algorithm. To address this issue, we propose to linearly map the input parameter space of the original function onto its AS before the evolution, performing the mutation and mate processes in a lower-dimensional space. In this contribution, we describe the novel method called ASGA, presenting differences and similarities with the standard GA method. We test the proposed method over n-dimensional benchmark functions--Rosenbrock, Ackley, Bohachevsky, Rastrigin, Schaffer N. 7, and Zakharov--and finally we apply it to an aeronautical shape optimization problem.
Keywords:
genetic algorithm
active subspaces
high-dimensional optimization

Journal

SIAM Journal on Scientific Computing cover
SIAM Journal on Scientific Computing
IF:
2.6
Papers:
5.1K
Citations:
1.8W

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Cited Papers

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