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Fault Current Coefficient and Time Delay Assignment for Microgrid Protection System With Central Protection Unit

机译:具有中央保护单元的微电网保护系统的故障电流系数和时延分配

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摘要

With growing numbers of distributed generators (DGs) getting connected to the network, new protection schemes are required. These schemes are aimed at responding to the changing fault current values, bi-directional current flow and distributed generation (DG) at all levels of the grid. For this purpose these schemes utilize comprehensive protection systems with extensive communication and coordination between DGs and protection devices such as relays. This paper details the assignment of two parameters which are critical for proper operation of a microgrid protection system. The first parameter, the fault current coefficient, represents the fault current supplied by any DG to any point inside the network whereas the second parameter is the adjustment of relay hierarchy for selective operation of relays. The automated assignment of these parameters serves the notion of self-operating microgrid protection system. Furthermore, elimination of manual design and calculation facilitates deployment of new DG units and thus makes it possible to design plug-and-play DGs and protection devices.
机译:随着越来越多的分布式发电机(DG)连接到网络,需要新的保护方案。这些方案旨在响应所有级别电网上不断变化的故障电流值,双向电流和分布式发电(DG)。为此,这些方案利用了综合保护系统,在危险品与继电器等保护设备之间进行了广泛的通信和协调。本文详细介绍了两个参数的分配,这对于微电网保护系统的正常运行至关重要。第一个参数是故障电流系数,代表由任何DG提供给网络内部任何点的故障电流,而第二个参数是为继电器的选择性操作而对继电器层次进行的调整。这些参数的自动分配符合自操作微电网保护系统的概念。此外,省去了手动设计和计算,有助于部署新的DG装置,从而可以设计即插即用DG和保护装置。

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