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Assessment of commutation failure in HVDC systems considering spatial-temporal discreteness of AC system faults

机译:考虑到AC系统故障的空间 - 时间离散的HVDC系统中换向期的评估

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This paper presents a novel commutation failure (CF) assessment method considering the influences of voltage magnitude drop, phase shift, and spatial-temporal discreteness of AC system faults. The commutating voltage-time area is employed to analyze the spatial-temporal discreteness of AC system faults causing CF in high-voltage direct current systems, and the influences of fault position and fault time on CF are revealed. Based on this, a novel CF criterion is proposed, further considering the influence of voltage phase shift and the spatial-temporal discreteness. Then this research develops a new CF assessment method, which does not rely on electromagnetic transient simulations. A real case from the China Southern Power Grid is used to verify the practicability of the proposed method by comparing with simulation results obtained using PSCAD/EMTDC.
机译:本文介绍了考虑到电压幅度下降,相移和空间 - 时空离散的影响的新型换向故障(CF)评估方法。采用换向电压 - 时区来分析AC系统故障的空间 - 时间离散,导致高压直流系统中的CF,并且揭示了CF上的故障位置和故障时间的影响。基于此,提出了一种新的CF标准,进一步考虑了电压相移和空间 - 时间离散的影响。然后,该研究开发了一种新的CF评估方法,不依赖于电磁瞬态模拟。来自中国南方电网的实际情况用于通过使用PSCAD / EMTDC获得的模拟结果进行比较来验证所提出的方法的实用性。

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