Overcurrent and Directional Overcurrent Protection for Microgrid

Zahira Shiva Salsabila, A. Adrianti, Muhammad Nasir
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Abstract

Microgrids will become common in future electrical distribution networks. Numerous operating modes that occur in microgrids make the development of protection schemes and settings challenging.  This paper aims to develop a simple protection scheme for the Microgrid IEC Benchmark without any expensive equipment such as communication apparatus. The scheme consists of directional and non-directional overcurrent relays with standard inverse characteristics. For the simulation tool, Digsilent powerfactory is employed. Four operating modes of the microgrid are applied to verify the relays’ coordination. The results show that the proposed scheme successfully protects the microgrid during short circuit faults with acceptable time margins.
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微电网过流和定向过流保护
微电网在未来的配电网络中将变得十分普遍。微电网中会出现多种运行模式,因此开发保护方案和设置具有挑战性。 本文旨在为微电网 IEC 基准开发一种简单的保护方案,无需通信设备等任何昂贵的设备。该方案由具有标准反向特性的定向和非定向过流继电器组成。仿真工具采用 Digsilent powerfactory。应用微电网的四种运行模式来验证继电器的协调性。结果表明,所提出的方案在短路故障期间成功地保护了微电网,并具有可接受的时间裕度。
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