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Commutation Failure analysis in single- and multi-infeed HVDC systems

机译:单馈和多馈HVDC系统中的换相故障分析

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Traditional methods usually use the quasi-steady state model with simplified assumptions for HVDC system analysis, which cannot take voltage distortion into account. The impact of occurrence instant of AC fault on critical commutation voltage is analytically derived and the possibility of commutation failure (CF) is analyzed. However, the complexity and nonlinearity of the single- and multi-infeed HVDC systems limit the applicability of analytical methods to study the CF phenomenon accurately. In this paper, an alternative approach that adopts electromagnetic transient simulation is proposed to assess the susceptibility of HVDC converters to CF. Two simulation-based methodologies are introduced to calculate the Commutation Failure Immunity Index (CFII). Parametric studies on the immunity of converters to commutation failure are investigated on the CIGRE benchmark HVDC test system. Finally, the proposed approach is verified by both local CF and concurrent CF phenomena, and anomalous concurrent CF phenomena are also identified in multi-infeed HVDC systems.
机译:传统方法通常使用具有简化假设的准稳态模型进行HVDC系统分析,该模型无法考虑电压畸变。通过分析得出交流故障发生瞬间对临界换相电压的影响,并分析了换相失败的可能性。但是,单馈和多馈高压直流输电系统的复杂性和非线性限制了用于精确研究CF现象的分析方法的适用性。在本文中,提出了一种采用电磁暂态仿真的替代方法来评估HVDC转换器对CF的敏感性。引入了两种基于仿真的方法来计算换向失败抗扰度指数(CFII)。在CIGRE基准HVDC测试系统上研究了变流器对换向失败的抵抗力的参数研究。最后,通过局部CF和并发CF现象对所提方法进行了验证,并且在多馈HVDC系统中也发现了异常并发CF现象。

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