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Development and application of an efficient optimizer for optimal coordination of directional overcurrent relays

机译:高效优化器的开发与应用,以实现定向过电力继电器的最佳协调

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This paper proposes an enhanced version of grey wolf optimizer (EGWO) to solve the coordination problem of directional overcurrent relays (DOCRs). The EGWO is proposed to improve the convergence characteristics and computation time of the conventional grey wolf optimizer (GWO) by selecting a suitable balance between exploration and exploitation phases. This balance is achieved by exponential decreasing of the control parameter during the iterative process. The EGWO is explored in all search space during predetermined iterations, and then it fast converges to the best optimal solution by local exploitation around the optimal solutions. The proposed optimization technique is applied to solve the coordination problem of DOCRs. The main objective of optimal coordination of DOCRs is to minimize total operating time of all primary relays with sustaining the selectivity between relay pairs. The feasibility and performance of the proposed technique for solving the coordination problem of DOCRs are investigated using four different systems, compared with several well-known techniques. The obtained results prove the effectiveness and superiority of the proposed technique compared with these techniques. The proposed technique is able to find the optimal relay settings and minimize the total operating time of relays (with a reduction ratio about 19.3995% relative to the conventional GWO) without any miscoordination. In addition, DIgSILENT PowerFactory is used to validate the proposed technique.
机译:本文提出了一种增强版的灰狼优化器(EGWO)来解决方向过电流继电器的协调问题(DOCRS)。通过在勘探和剥削阶段之间选择合适的平衡,提出了EGWO来改善传统灰狼优化器(GWO)的收敛特性和计算时间。通过在迭代过程期间对控制参数的指数降低来实现这种平衡。在预定迭代期间,在所有搜索空间中探讨了EGWO,然后通过围绕最佳解决方案,通过本地开发来快速收敛到最佳最佳解决方案。应用了所提出的优化技术来解决DOCRS的协调问题。最佳协调DOCRS的主要目标是最大限度地减少所有初级继电器的总运行时间,以维持继电器对之间的选择性。使用四种不同的系统研究了解决DOCRS协调问题的所提出的技术的可行性和性能,与几种不同的技术进行了众所周知的技术。与这些技术相比,所获得的结果证明了所提出的技术的有效性和优越性。所提出的技术能够找到最佳的继电器设置,并最小化继电器的总操作时间(相对于传统GWO的减少比约19.3995%),而没有任何误差。此外,DigSilent PowerFactory用于验证所提出的技术。

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