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Transient-Voltage-Based Protection Scheme for DC Line Faults in the Multiterminal VSC-HVDC System

机译:多端VSC-HVDC系统中基于暂态电压的直流线路故障保护方案

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摘要

DC line faults are major issues for a multiterminal high-voltage direct current (HVDC) system based on voltage-source converter (VSC). The fault current increases quickly along with a large peak, and complete isolation of the faulted system is not a viable option. Therefore, protection with high selectivity and accuracy is essential. In this paper, a new protection scheme for dc line in multiterminal VSC-HVDC system is proposed, which consists of a main protection and a backup protection. Both the protection principles are based on the supplemental inductor placed at each end of the dc line. Fault identification can be achieved by calculating the ratio of the transient voltages (ROTV) at both sides of the inductor. The main protection is able to detect the fault quickly without communication, while the backup protection is a pilot method based on the ROTVs at both ends of dc line, which is employed to identify the high-resistance faults and offer a backup in case the former fails. Comparison with some previous protection methods shows that the performance of the proposed protection scheme is promising. Numerous simulation studies carried out in PSCAD/EMTDC and real-time digital simulator (RTDS) under various conditions have demonstrated that fault identification with high selectivity and strong robustness against fault resistance and disturbance can be achieved by employing the proposed protection scheme.
机译:对于基于电压源转换器(VSC)的多端子高压直流(HVDC)系统,DC线路故障是主要问题。故障电流会随着较大的峰值迅速增加,并且完全隔离故障系统不是可行的选择。因此,高选择性和高精度的保护至关重要。提出了一种新的多端VSC-HVDC系统直流线路保护方案,该方案由主保护和备用保护组成。两种保护原理均基于放置在直流线路两端的辅助电感器。可以通过计算电感器两侧的瞬态电压(ROTV)之比来实现故障识别。主保护能够在不进行通信的情况下快速检测到故障,而备用保护是基于直流线路两端的ROTV的先导方法,用于识别高阻故障并在备用情况下提供备用失败。与某些以前的保护方法的比较表明,所提出的保护方案的性能是有希望的。在各种条件下在PSCAD / EMTDC和实时数字仿真器(RTDS)中进行的大量仿真研究表明,通过采用建议的保护方案,可以实现具有高选择性和强大的抗故障和干扰鲁棒性的故障识别。

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