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Runtime Analysis of Somatic Contiguous Hypermutation Operators in MOEA/D Framework

机译:MOEA / D框架中躯体连续高压运算符的运行时分析

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Somatic contiguous hypermutation (CHM) operators are important variation operators in artificial immune systems. The few existing theoretical studies are only concerned with understanding the optimization behavior of CHM operators on solving single-objective optimization problems. The MOEA/D framework is one of the most popular strategies for solving multi-objective optimization problems (MOPs). In this paper, we present a runtime analysis of using two CHM operators in MOEA/D framework for solving five benchmark MOPs, including four bi-objective and one many-objective problems. Our analyses show that the expected runtimes of CHM operators on the four bi-objective problems are better than or as good as that of the well-studied standard bit mutation operator. Moreover, using CHM operators in MOEA/D framework can improve the best known upper bound on the many-objective problem by a factor of n. This paper provides insight into understanding the optimization behavior of CHM operators in the well-known MOEA/D framework, and indicates that using the CHM operator in MOEA/D framework is a promising method for handling MOPs.
机译:体细胞连续的高压(CHM)运营商是人工免疫系统中的重要变异算子。少数现有的理论研究仅涉及了解CHM运营商在解决单目标优化问题上的优化行为。 MOEA / D框架是解决多目标优化问题(MOPS)最受欢迎的策略之一。在本文中,我们在MoEA / D框架中使用了两个CHM运算符来解决五个基准MOP的运行时分析,包括四个双目标和多目标问题。我们的分析表明,CHM运营商对四个双目标问题的预期运行时间优于或与学习的标准钻头突变算子的良好。此外,在MOEA / D框架中使用CHM运算符可以通过n的数量来改善许多客观问题的最佳已知的上限。本文介绍了解CHM运算符在众所周知的MOEA / D框架中的优化行为,并表示使用MOEA / D框架中的CHM运算符是处理拖把的有希望的方法。

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