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A novel pilot protection principle for VSC-HVDC cable lines based on fault component current

机译:基于故障分量电流的VSC-HVDC电缆线路的新型先导保护原理

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This paper presents a novel pilot protection principle for VSC-HVDC cable lines based on fault component current. In the transient process of cable line, if a fault occurs over the cable line, the current measured at both convert stations would have the same changing direction and the signs of the fault component current at both convert stations are the same to each other; otherwise, if a fault occurs beyond the cable line, the current measured at two convert stations would have the opposite changing direction and the sign of the fault component current at both convert stations are opposite to each other. According to this characteristic, the directional element can be located at both convert stations and state signal can be sent to the other station. Thus, the pilot protection principle can be implemented only using two terminal current. In addition, the setting principle is proposed based on fault component current in this paper. The proposed pilot protection principle is simple, reliable, and practical. It can be implemented with a low sampling rate and does not need the current data synchronization seriously. Compared with current differential protection, the proposed method has a low requirement on baud rate. At the same time, various faults are simulated by using the system of VSC-HVDC built in PSCAD/EMTDC, in which frequency-dependent parameter cable line model is adopted. The simulation results show that the method can identify the fault reliably and rapidly in different conditions only using the current measured at both convert stations and has sufficient sensitivity for high resistance ground fault.
机译:本文提出了一种基于故障分量电流的VSC-HVDC电缆线路的新型先导保护原理。在电缆线路的瞬变过程中,如果电缆线路发生故障,则两个转换站上测得的电流将具有相同的变化方向,并且两个转换站上的故障分量电流的符号彼此相同;否则,如果故障发生在电缆线之外,则在两个转换站测量的电流将具有相反的变化方向,并且两个转换站的故障分量电流的符号彼此相反。根据该特性,定向元件可以位于两个转换站,状态信号可以发送到另一个站。因此,只能使用两个端子电流来实现先导保护原理。另外,本文基于故障分量电流提出了整定原理。所提出的飞行员保护原则是简单,可靠和实用的。它可以以低采样率实现,并且不需要当前的数据同步。与电流差动保护相比,该方法对波特率的要求较低。同时,利用PSCAD / EMTDC中内置的VSC-HVDC系统对各种故障进行仿真,其中采用了随频率变化的参数电缆线路模型。仿真结果表明,该方法仅利用两个换流站测得的电流,即可在不同条件下可靠,快速地识别故障,对高电阻接地故障具有足够的灵敏度。

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