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A New Hybrid Nelder-Mead Particle Swarm Optimization for Coordination Optimization of Directional Overcurrent Relays

机译:定向过流继电器协调优化的新型混合式Nelder-Mead粒子群算法

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摘要

Coordination optimization of directional overcurrent relays (DOCRs) is an important part of an efficient distribution system. This optimization problem involves obtaining the time dial setting (TDS) and pickup current (I_p) values of each DOCR. The optimal results should have the shortest primary relay operating time for all fault lines. Recently, the particle swarm optimization (PSO) algorithm has been considered an effective tool for linearonlinear optimization problems with application in the protection and coordination of power systems. With a limited runtime period, the conventional PSO considers the optimal solution as the final solution, and an early convergence of PSO results in decreased overall performance and an increase in the risk of mistaking local optima for global optima. Therefore, this study proposes a new hybrid Nelder-Mead simplex search method and particle swarm optimization (proposed NM-PSO) algorithm to solve the DOCR coordination optimization problem. PSO is the main optimizer, and the Nelder-Mead simplex search method is used to improve the efficiency of PSO due to its potential for rapid convergence. To validate the proposal, this study compared the performance of the proposed algorithm with that of PSO and original NM-PSO. The findings demonstrate the outstanding performance of the proposed NM-PSO in terms of computation speed, rate of convergence, and feasibility.
机译:定向过流继电器(DOCR)的协调优化是高效配电系统的重要组成部分。此优化问题涉及获得每个DOCR的时间拨号设置(TDS)和启动电流(I_p)值。对于所有故障线路,最佳结果应具有最短的一次继电器操作时间。近年来,粒子群优化(PSO)算法已被认为是解决线性/非线性优化问题的有效工具,并应用于电力系统的保护和协调。在有限的运行时间范围内,常规PSO会将最佳解决方案视为最终解决方案,而PSO的早期收敛会导致总体性能下降,并且会增加将局部最优视为全球最优的风险。因此,本研究提出了一种新的混合Nelder-Mead单纯形搜索方法和粒子群优化算法(提出的NM-PSO),以解决DOCR协调优化问题。 PSO是主要的优化器,并且Nelder-Mead单纯形搜索方法由于具有快速收敛的潜力而被用来提高PSO的效率。为了验证该提议,本研究将提出的算法与PSO和原始NM-PSO的性能进行了比较。这些发现证明了所提出的NM-PSO在计算速度,收敛速度和可行性方面的出色表现。

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  • 来源
    《Mathematical Problems in Engineering》 |2012年第7期|456047.1-456047.18|共18页
  • 作者

    An Liu; Ming-Ta Yang;

  • 作者单位

    Department of Computer Science and Information Engineering, St. John's University, No. 499, Section 4, Tam King Road, Tamsui District, New Taipei City 25735, Taiwan,Graduate Institute of Computer and Communication Engineering, National Taipei University of Technology, No. 1, Section 3, Chung Hsiao East Road, Taipei 10608, Taiwan;

    Department of Electrical Engineering, St. John's University, No. 499, Section 4, Tam King Road, Tamsui District, New Taipei City 25135, Taiwan;

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