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Dual-setting characteristic for directional overcurrent relays considering multiple fault locations

机译:考虑多个故障位置的定向过流继电器的双设定特性

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Optimal relay settings are determined where coordination constraints are modelled considering only either one fault location (near end or midpoint) or two fault locations (near and far end) on a feeder. This study, first, investigates whether considering one or two fault locations is sufficient to guarantee proper coordination for faults at all other locations on a feeder. The results show that violations, in the coordination constraints, can occur at various points along the feeder if the relays are coordinated considering one or two fault locations. In addition, considering multiple fault locations while determining the optimal relay setting can avoid such problem but on the expense of the overall relay tripping time. Thus, a dual-setting characteristic for directional overcurrent relays (DOCRs) is proposed instead of the conventional inverse time-current characteristic. The study is conducted on the power transmission system of IEEE 24-bus and the power distribution system of IEEE 14-bus. The proposed characteristic achieves notable reduction in total DOCRs operating time over the conventional characteristic for both test systems while achieving proper coordination across a broader range of possible fault locations.
机译:确定最佳继电器设置,在建模协调约束时仅考虑馈线上的一个故障位置(近端或中点)或两个故障位置(近端和远端)。首先,本研究调查考虑一个或两个故障位置是否足以确保对馈线上所有其他位置的故障进行适当协调。结果表明,如果考虑一个或两个故障位置对继电器进行协调,则会在馈线的各个点发生协调约束冲突。此外,在确定最佳继电器设置时考虑多个故障位置可以避免此类问题,但会浪费整个继电器跳闸时间。因此,提出了用于定向过流继电器(DOCR)的双重设定特性,而不是传统的逆时电流特性。该研究针对IEEE 24-bus的电力传输系统和IEEE 14-bus的配电系统进行。对于两个测试系统,所提出的特性均实现了超过传统特性的总DOCR操作时间的显着减少,同时在更大范围的可能故障位置上实现了适当的协调。

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