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Robustness evaluation of fast breaker failure backup protection in bipolar HVDC grids

机译:双极性HVDC电网中快速断路器故障后备保护的鲁棒性评估

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To ensure a reliable fault clearing, a backup protection scheme is required for selective HVDC grid protection. One way to achieve this is to use both voltage and current measurements to distinguish uncleared faults from cleared ones during the fault clearing process of the primary protection. This paper studies the applicability of such a backup protection algorithm in meshed bipolar HVDC grids and evaluates the robustness of the algorithm against system operating conditions and breaker opening delays. The influence of different operating conditions on the fault waveforms is analysed using a three-terminal bipolar test system. The robustness of the fast breaker failure backup protection algorithm is evaluated via simulation studies on the bipolar test system in PSCAD. The simulation results show that the fast breaker failure backup protection algorithm can distinguish between uncleared and cleared faults with sufficient margin for all considered operating conditions.
机译:为了确保可靠的故障排除,需要选择性HVDC电网保护的备用保护方案。实现此目的的一种方法是在主保护的故障清除过程中,同时使用电压和电流测量来将未清除的故障与已清除的故障区分开。本文研究了这种备用保护算法在网状双极HVDC电网中的适用性,并针对系统运行条件和断路器断开延时评估了该算法的鲁棒性。使用三端双极测试系统分析了不同工作条件对故障波形的影响。通过在PSCAD中的双极测试系统上进行仿真研究,评估了快速断路器故障备用保护算法的鲁棒性。仿真结果表明,快速断路器故障备用保护算法可以在所有考虑的运行条件下以足够的余量来区分未清除故障和已清除故障。

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