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Analysis of voltage source converter-based high-voltage direct current under DC line-to-earth fault

机译:直流线对地故障下基于电压源转换器的高压直流电分析

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摘要

DC line faults on high-voltage direct current (HVDC) systems utilising voltage source converters (VSCs) are a major issue for multi-terminal HVDC systems in which complete isolation of the faulted system is not a viable option. Of these faults, single line-to-earth faults are the most common fault scenario. To better understand the system under such faults, this study analyses the behaviour of HVDC systems based on both conventional two-level converter and multilevel modular converter technology, experiencing a permanent line-to-earth fault. Operation of the proposed system under two different earthing configurations of converter side AC transformer earthed with converter unearthed, and both converter and AC transformer unearthed, was analysed and simulated, with particular attention paid to the converter operation. It was observed that the development of potential earth loops within the system as a result of DC line-to-earth faults leads to substantial overcurrent and results in oscillations depending on the earthing configuration.
机译:对于多端子HVDC系统来说,利用电压源转换器(VSC)的高压直流(HVDC)系统上的DC线路故障是一个主要问题,在该系统中,完全隔离故障系统不是可行的选择。在这些故障中,单线接地故障是最常见的故障情况。为了更好地了解此类故障下的系统,本研究分析了基于常规两级变流器和多级模块化变流器技术的HVDC系统的行为,并经历了永久的线对地故障。分析并仿真了所提出系统在变流器侧交流变压器的两种不同接地配置下的运行情况,该变流器侧已将变流器接地,并且变流器和交流变压器均已接地,并特别注意变流器的运行。已观察到,由于直流线对地故障而导致系统内潜在的接地回路的发展会导致大量的过电流,并根据接地配置而导致振荡。

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