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The optimal coordination of over-current relay protection in radial network based on Particle Swarm Optimization

机译:基于粒子群算法的径向网过电流继电保护最优协调

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Making a robust and reliable power system with coordination of over-current relays (OCRs) is a big challenge for relaying engineers. Various type of programming optimization techniques are frequently used to find best optimal relay settings of over-current relays in modern distribution systems. The goal of this paper is to discuss optimization of over-current relays coordination for internal faults protection over transmission lines in radial network via Particle Swarm Optimization (PSO), which is one of the capable heuristic techniques to solve constrained optimization problems. PSO algorithm objective is to achieve proper coordination between each main and its back-up relays. Based on the variables obtained during normal operation and three phases' faults conditions from DigSILENT software simulation on IEEE 15 nodes radial system, PSO algorithm is applied to properly identify suitable relays settings namely Time Multiplier Setting (TMS) and Plug Setting (PS) for all Inverse Definite Minimum Time (IDMT) over-current relays. The collected data are conveniently examined using the PSO algorithm implemented in MATLAB. The obtained TMS and PS settings of each relay show the effectiveness of the proposed PSO technique in terms of accuracy and speed in a large scale radial network configuration.
机译:协调过流继电器(OCR)来构建强大而可靠的电源系统对继电器工程师来说是一个巨大的挑战。在现代配电系统中,经常使用各种类型的编程优化技术来找到过流继电器的最佳最佳继电器设置。本文的目的是讨论通过粒子群算法(PSO)来优化径向网络传输线内部故障保护的过电流继电器协调,这是解决约束优化问题的一种有效的启发式技术。 PSO算法的目标是在每个主电源及其备用继电器之间实现适当的协调。根据在IEEE 15节点径向系统上通过DigSILENT软件仿真获得的正常运行期间的变量以及三相故障条件,PSO算法适用于为所有继电器正确识别合适的继电器设置,例如时间倍增器设置(TMS)和插头设置(PS)逆时限最小时间(IDMT)过电流继电器。使用MATLAB中实现的PSO算法可以方便地检查收集的数据。获得的每个继电器的TMS和PS设置在大规模径向网络配置中,在准确性和速度方面显示了所提出的PSO技术的有效性。

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