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Fault current characterisation in VSC-based HVDC systems

机译:基于VSC的HVDC系统中的故障电流表征

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The DC-side line faults in high-voltage direct-current (HVDC) systems utilising voltage-source converters (VSCs) are a major concern for multi-terminal HVDC systems in which complete isolation of the faulted system is not a viable option. A number of challenges are posed by both pole-to-pole and pole-to-ground faults including the presence of very fast and high amplitude discharge current from the DC-link capacitance, the lack of suitable DC current breaking devices, and the lack of highly discriminative fault detection techniques. Therefore, faults occurring along the interconnecting DC cables are likely to threaten system operation. In order to better understand the system under such faults, this paper analyses the behaviour of HVDC systems energised by the conventional two-level VSC. This investigation provides a systematic evaluation of the nature of a DC fault in HVDC systems during a permanent poleto-pole and pole-to-ground fault taking into consideration a number of influencing parameters including fault position, fault resistance and other operational conditions. To quantify these dependencies on DC voltage and current characteristics a systematic simulation study is undertaken in which the natural responses of the HVDC networks transients during DC side faults are examined. The outcome of this paper lies the necessary knowledge foundation for developing future DC protection methods.
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)系统中的DC侧线路故障是一个主要问题,在多端子HVDC系统中,完全隔离故障系统不是可行的选择。极对极和极对地故障都带来了许多挑战,包括来自直流母线电容的非常快速和高幅度的放电电流的存在,缺少合适的直流电流分断装置以及缺乏高判别性故障检测技术。因此,沿互连的直流电缆发生的故障可能会威胁系统运行。为了更好地理解此类故障下的系统,本文分析了由常规两级VSC供电的HVDC系统的行为。这项研究考虑了许多影响参数,包括故障位置,故障电阻和其他运行条件,对永久性极对极和极对地故障期间的HVDC系统中DC故障的性质进行了系统的评估。为了量化这些对直流电压和电流特性的依赖性,进行了系统仿真研究,其中研究了直流侧故障期间HVDC网络瞬态的自然响应。本文的结果为开发未来的直流保护方法奠定了必要的知识基础。

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