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A communication-less overcurrent protection for distribution system with distributed generation integrated

机译:集成了分布式发电的配电系统无通信过电流保护

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The increasing penetration of distributed generation (DG) in distribution systems has resulted in a challenge for the conventional protection methods, due to the bi-directional power flow and the variation of fault current contribution. Moreover, the operation of distribution system in islanded mode is still an issue due to the difference between the short circuit current in islanded mode and grid-connected mode. This paper proposed a novel adaptive protection method, measuring only the local information rather than using the communication, to adapt the protection settings to the states, such as the change of operation mode (grid-connected or islanded), the change of network topology (radial or meshed) as well as the disconnection of some DG. The directional overcurrent relays (DOCR) is adopted in the distributed system to shorten the tripping time in order to maintain the DG's connection. The relay settings are calculated offline and modified online according to the state detection, including the islanding detection, the power flow detection and the fault section detection. This protection method is verified by simulating a distribution system of Denmark in DIgSILENT PowerFactory.
机译:由于双向潮流和故障电流贡献的变化,分布式发电(DG)在配电系统中的普及率不断提高,这对传统的保护方法提出了挑战。而且,由于孤岛模式和并网模式下的短路电流不同,孤岛模式下的配电系统的操作仍然是一个问题。本文提出了一种新颖的自适应保护方法,该方法仅测量本地信息而不使用通信来使保护设置适应状态,例如操作模式的变化(并网或孤岛),网络拓扑的变化(径向或网状),以及某些DG的断开连接。分布式系统中采用了定向过流继电器(DOCR)来缩短跳闸时间,以保持DG的连接。继电器设置离线计算,并根据状态检测在线修改,包括孤岛检测,潮流检测和故障部分检测。通过在DIgSILENT PowerFactory中模拟丹麦的配电系统,验证了这种保护方法。

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