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Enhanced MV microgrid protection scheme for detecting high-impedance faults

机译:用于检测高阻抗故障的增强型MV微电网保护方案

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In the future, most microgrid connected distributed generation (DG) and energy storage units will be inverter interfaced with limited fault current feeding capabilities. In addition, during islanded microgrid or islanded operation high fault currents from the utility grid are not available. Therefore new microgrid protection schemes are needed. Previously a new protection scheme was proposed which included both short-circuit and earth-fault protection for island operated medium-voltage microgrid having multiple protection zones without the need for high-speed communication. The proposed protection scheme was not dependent from fault current contribution of the DG units and was selective with the DG unit low-voltage-ride-through curves. In this paper, MV microgrid protection scheme is enhanced so that it will also include, for example, high-impedance-fault detection for downed conductors. Also other protection scheme improvement possibilities, like DG unit high-voltage-ride-through curve compatibility and use of adaptive start/pick-up setting, will be presented in the paper.
机译:将来,大多数微电网连接的分布式发电(DG)和能量存储单元将通过具有有限故障馈电能力的逆变器接口连接。另外,在孤岛微电网或孤岛运行期间,来自公用电网的高故障电流不可用。因此,需要新的微电网保护方案。以前,提出了一种新的保护方案,该方案包括具有多个保护区的孤岛式中压微电网的短路和接地故障保护,而无需高速通信。所提出的保护方案不依赖于DG单元的故障电流贡献,而是对DG单元的低电压穿越曲线具有选择性。在本文中,中压微电网保护方案得到了增强,因此它还将包括例如下线导体的高阻抗故障检测。本文还将介绍其他保护方案的改进可能性,例如DG单元的高电压穿越曲线兼容性和使用自适应启动/拾取设置。

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