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Coordination of Overcurrent, Directional and Differential Relays for the Protection of Microgrid System

机译:用于保护微电网系统的过电流,方向和差分继电器的协调

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Microgrid implementation draws new challenges especially in the coordination of protective devices that are not likely to appear in a traditional distribution network. Variation of fault current levels, bi-directional fault current and changing of microgrid operation modes make protection of the microgrids more difficult. In this work, a systematic procedure for coordination of different protection schemes is presented to secure the operation of a microgrid system. The procedure initially starts with coordination of overcurrent (OC) relays and followed by directional overcurrent (DOC) relays in the system. If the coordination of these two types of relays is unsatisfactory, then differential (DIF) relays are used to replace the OC relay in the faulty section. The proposed method takes into account device selectivity, sensitivity and proper protection function simultaneously. Simulation results show that the proposed coordination method safely protect a microgrid system during both grid-connected and islanded operation modes.
机译:微电网实现引起了新的挑战,特别是在不太可能出现在传统分销网络中的保护装置的协调中。故障电流水平的变化,双向故障电流和微电网操作模式的变化使微电网的保护更加困难。在这项工作中,提出了一种用于协调不同保护方案的系统程序,以确保微电网系统的操作。该过程最初从过电流(OC)继电器的协调开始,然后在系统中进行定向过电流(DOC)继电器。如果这两种类型的继电器的协调是不令人满意的,则使用差分(DIF)继电器来替换故障部分中的OC继电器。所提出的方法同时考虑了设备选择性,灵敏度和正确的保护功能。仿真结果表明,拟议的协调方法在网格连接和岛状操作模式下安全地保护微电网系统。

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