配电网过流继电器优化协调

M. Atsever, O. Karacasu, M. H. Hocaoğlu
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引用次数: 5

摘要

过流继电协调是配电系统中基于过流检测的一次保护,对电网的有效保护起着至关重要的作用。因此,在故障状态下,必须保证继电器之间的最佳协调,提供选择性和快速运行。因此,在这种网络中,中继协调可以被设计为具有高度约束方程的优化问题。线性规划与其他优化技术相比,具有实现简单、计算时间短等优点,被广泛用于解决继电器协调问题。为了实现更快和有选择性的保护,许多优化算法也已为此目的定制。水循环算法(WCA)就是其中之一,并且已经在文献中描述了有希望的结果。然而,容性电流可能危及传统的接地故障优化过程。因此,本文分别对架空线路和地下电缆构成的样网进行了接地故障性能分析。结果表明,在有线网络中,优化过程需要额外的约束来提供选择性。因此,本文通过在优化问题中加入适当的约束,保证了继电器的最优整定和选择保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Overcurrent Relay Coordination in Distribution Networks
Over-current relay coordination plays a critical role for effective protection of networks since primary protection is based on over-current detection in distribution systems. Thus, optimal relay coordination must be ensured between relays in faulted condition, providing selectivity and fast operation. Therefore, relay coordination can be designed as an optimization problem with highly constrained equations in such networks.Linear programming, which is simple to be implemented and requires less computation time when compared other optimisation techniques, is widely employed for solving relay coordination problems. To achieve faster and selective protection a number of optimisation algorithms have, also, been customised for the purpose. Water Cycle Algorithm (WCA) is among them and has promising results, already, depicted in the literature.However, capacitive currents may jeopardize traditional optimisation process for earth faults. Thus, in this paper, performance analysis is carried out for earth faults in sample distribution networks constructed with overhead lines and underground cables, separately. The results show that in cabled networks, additional constraints are needed for the optimisation process to provide selectivity. Consequently, optimal relay settings and selective protection are ensured by adding proper constraints into optimisation problem in this paper.
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