在过流继电器协调中,使近端和远端主继电器之间的操作时间间隔最小化

Manohar Singh, B. K. Panigrahi
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引用次数: 5

摘要

在双向故障馈电线路中,应同时从两个故障馈电源端清除故障,使故障电流对出电过流继电器协调的影响最小。在现有的过电流继电器协调算法中,观察到故障线路近端和远端一次过电流继电器之间的工作时间间隔相当大。这种时间间隙可能会使电网中的故障电流重新分布,从而在协调良好的电网中导致级联型过电流继电器失配。本文对过电流继电器协调问题的表述进行了改进,使近端和远端一次过电流继电器之间的工作时间间隔在期望的时间范围内最小,从而消除了配电网中故障电流重新分布的可能性。提出的改进过电流继电器协调算法在8总线测试配电系统中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimization of operating time gap between primary relays at near and far ends in overcurrent relay coordination
In bidirectional fault feed distribution lines, the fault should be cleared from both the fault feeding sources ends simultaneously, so that impact of faults currents on the exiting over current relay coordination will be minimum. In existing over current relay coordination algorithms, it is observed that operating time gaps between primaries over current relays at near end and far end of faulted line are quite enough. This time gaps may redistribute the fault currents in the power networks which leads to cascading type of over current relay miscoordination in a properly coordinated power network. In this paper, the over current relay coordination problem formulation is modified in such a way to minimize the operating time gap between the primary over current relays at near and far ends with in a desired time margin such that the chance of redistribution of fault currents in the distribution network is eliminated. The proposed modified over current relay coordination algorithm is implemented in 8 bus test distribution system.
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