可再生能源多端MVDC配电系统故障检测与定位保护策略

M. Monadi, C. Koch-Ciobotaru, A. Luna, J. I. Candela, P. Rodríguez
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引用次数: 47

摘要

提出了一种中压直流(MVDC)配电系统的故障定位方法和故障排除策略。MVDC系统适用于微电网(mg)之间的连接和可再生能源系统(RESs)与配电系统的集成。由于直流系统故障电流的规定,采用时间逆分级法对过电流(O/C)继电器进行协调比较困难。因此,本文采用O/C继电器之间的通信链路来诊断故障定位。另一方面,故障清除是通过直流断路器(DCCB)和隔离开关的操作来完成的。在这种保护策略中,O/C继电器通过通信链路检测故障部件,dccb熄灭故障后,直流开关将故障部件隔离。最后,当DCCB重新关闭时,系统的声音部分重新通电。此外,通信链路的数据传输基于IEC61850协议的标准消息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A protection strategy for fault detection and location for multi-terminal MVDC distribution systems with renewable energy systems
A fault location method and a fault clearance strategy are presented in this paper for medium voltage dc (MVDC) distribution system. MVDC systems are applicable for connection between microgrids (MGs) and integration of renewable energy systems (RESs) to distribution systems. Due to the specifications of fault current in dc systems, it is difficult to coordinate the over current (O/C) relays based on the time inverse grading. Hence, in this paper, a communication link between O/C relays is used to diagnose the fault location. On the other hand, the fault clearance is done by the operation of dc circuit breakers (DCCB) and isolator switches. In this protection strategy, O/C relays detect the faulty part using communication links and after the fault extinguishing by DCCBs, the dc switches isolate the faulty part. Finally, the sound parts of the system re-energize when DCCB are re-closed. Moreover, data transmission by communication links is based on the standard messages of IEC61850 protocol.
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