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文章摘要
基于改进人工搜索群算法的欠压脱扣器优化
Optimization of undervoltage release based on improved artificial searching swarm algorithm
Received:January 18, 2019  Revised:January 18, 2019
DOI:10.19753/j.issn1001-1390.2020.04.023
中文关键词: 人工搜索群算法  莱维飞行  有限元分析  欠压脱扣器
英文关键词: Artificial  searching swarm  algorithm, Lévy  Flight, Finite  element analysis, Undervoltage  release
基金项目:河北省科技计划项目(16214528);河北省自然科学基金(E2018202282)
Author NameAffiliationE-mail
Chen Tanggong State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology 3163305179@qq.com 
Wang Mengying* State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology wmyingwyyx@163.com 
Huang Tao State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology 2360224096@qq.com 
Liu Chao State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology 601667537@qq.com 
Zhou Xiaoting State Key Laboratory of Reliability and Intelligence of Electrical Equipment,Hebei University of Technology 2710740716@qq.com 
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中文摘要:
      文章在对莱维飞行和人工搜索群算法(Artificial searching swarm algorithm,ASSA)原理研究的基础上,为克服算法易于陷入局部解的缺陷,提出了莱维飞行人工搜索群算法(Lévy Flight Artificial searching swarm algorithm,LFASSA)。为了验证改进后算法的性能,文中选取了标准测试函数进行测试,对改进前后的算法性能进行对比,证明了LFASSA算法在收敛速度和计算精度方面的优越性。文中利用ANSYS软件建立了欠压脱扣器参数化模型,将LFASSA算法和ANSYS有限元分析软件相结合,对欠压脱扣器进行了优化设计。优化结果表明,在满足吸力要求的情况下,减少了欠压脱扣器中铜和铁的用量,磁场分布更加均匀,达到了缩减成本和提高产品性能的目的。
英文摘要:
      Based on the research of the theories of the artificial searching swarm algorithm (ASSA), in order to overcome the shortcomings of the ASSA, the Lévy Flight Artificial searching swarm algorithm is proposed (LFASSA). In order to verify the performance of the improved algorithm, the standard test function is selected for testing. The performance of the algorithm before and after the improvement is compared, and the convergence speed and calculation accuracy of LFASSA are proved. In this paper, ANSYS software is used to establish the parametric model of undervoltage release. The LFASSA and ANSYS software are combined to optimize the undervoltage release. The optimization results show that under the condition of satisfying the suction requirement, the volume of copper and iron of the undervoltage release is reduced, and the magnetic field distribution is more uniform, which achieves the purpose of reducing cost and improving product performance.
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