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Backup Protection of Multi-Terminal HVDC Grids Based on Quickest Change Detection

机译:基于最快变化检测的多终端HVDC电网后备保护

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Protection against dc faults is one of the main technical challenges for the operation of converter-based HVdc systems. Protection becomes even more challenging when the HVdc systems are expanded to multi-terminal dc (MTdc) grids with more than two terminals/converter stations. Similar to their ac counterparts, proper protection of the MTdc grids necessitates both primary and backup protection schemes in which, in case of malfunctioning/failure of primary protection, backup protection trips as fast as possible. Although several backup relaying algorithms, such as current threshold-and classifier-based methods, have been proposed, none of them offers sufficient speed, robustness, and scalability. In this paper, a novel backup protection algorithm based on quickest change detection technique is proposed, which offers fast and robust backup protection functionality for the primary relay. The performance and effectiveness of the proposed algorithm are evaluated and verified with time-domain simulation studies in the PSCAD/EMTDC environment. The study results confirm satisfactory performance of the proposed algorithm in terms of accuracy, robustness, and speed under various fault scenarios. The proposed method is applicable to different grid configurations and is able to cooperate with different primary protection algorithms and breaker configurations.
机译:直流故障保护是基于转换器的HVdc系统运行的主要技术挑战之一。当HVdc系统扩展到具有两个以上端子/换流站的多端子dc(MTdc)电网时,保护就变得更具挑战性。与交流同类产品类似,对MTdc电网的适当保护需要同时采用主保护和备用保护方案,在这些方案中,如果主保护出现故障/失败,则备用保护应尽快跳闸。尽管已经提出了几种备用中继算法,例如基于当前阈值和基于分类器的方法,但是它们都没有提供足够的速度,鲁棒性和可伸缩性。本文提出了一种基于最快变化检测技术的后备保护算法,为主继电器提供了快速,鲁棒的后备保护功能。在PSCAD / EMTDC环境中,通过时域仿真研究对所提出算法的性能和有效性进行了评估和验证。研究结果证实了该算法在各种故障情况下的准确性,鲁棒性和速度方面均具有令人满意的性能。所提出的方法适用于不同的电网配置,并且能够与不同的一次保护算法和断路器配置配合使用。

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