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A New Magnetotactic Bacteria Optimization Algorithm Based on Moment Migration

机译:一种基于矩移的趋磁细菌优化算法

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Magnetotactic bacteria is a kind of polyphyletic group of prokaryotes with the characteristics of magnetotaxis that make them orient and swim along geomagnetic field lines. Its distinct biology characteristics are useful to design new optimization technology. In this paper, a new bionic optimization algorithm named Magnetotactic Bacteria Moment Migration Algorithm (MBMMA) is proposed. In the proposed algorithm, the moments of a chain of magnetosomes are considered as solutions. The moments of relative good solutions can migrate each other to enhance the diversity of the MBMMA. It is compared with variants of PSO on standard functions problems. The experiment results show that the MBMMA is effective in solving optimization problems. It shows better or competitive performance compared with the variants of PSO on most of the tested functions in this paper.
机译:趋磁细菌是原核生物的一种多系群,具有趋磁特性,使它们定向并沿着地磁场线游动。其独特的生物学特性对于设计新的优化技术很有用。本文提出了一种新的仿生优化算法,称为趋磁细菌矩迁移算法(MBMMA)。在提出的算法中,磁小体链的矩被视为解决方案。相对好的解决方案可以相互迁移,以增强MBMMA的多样性。在标准功能问题上,将其与PSO的变体进行了比较。实验结果表明,MBMMA解决了优化问题。与大多数测试功能中的PSO变体相比,它具有更好的性能或具有竞争力的性能。

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