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Multi-terminal VSC-HVDC Pole-to-pole Fault Analysis and Fault Recovery Study

机译:多端子VSC-HVDC极间故障分析和故障恢复研究

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Voltage-Sourced Converter (VSC) HVDC is attracting significant attention as the UK tries to meet its renewable energy targets. However, compared with the traditional Current-Sourced Converter (CSC) HVDC, VSC-HVDC is more vulnerable to DC faults due to the lower DC side impedances and more sensitive power electronics used in its construction. This paper investigates the equivalent two-level converter system response under a pole-to-pole fault. A three-terminal VSC-HVDC system is developed in PSCAD/EMTDC to evaluate the system fault response and to verify theoretical analysis. Based on the results, it is found that the AC grid will initially contribute relatively little to the DC fault current seen by the DC side circuit breakers during a pole-to-pole fault. The converter fault recovery strategy has also been studied in this paper. It is found that after successful operation of the hybrid DC circuit breaker, with the aid of bump-less transfer control, the DC system has a good voltage recovery response. The contribution of this paper is that it gives an improved understanding of the system response and offers some guidance for the design of DC protection systems.
机译:随着英国试图实现其可再生能源目标,电压源转换器(VSC)HVDC受到了广泛关注。但是,与传统的电流源转换器(CSC)HVDC相比,VSC-HVDC的直流侧阻抗较低,并且其结构中使用的功率电子器件更灵敏,因此更容易遭受直流故障的影响。本文研究了极间故障下的等效两电平变流器系统响应。在PSCAD / EMTDC中开发了一个三端VSC-HVDC系统,以评估系统故障响应并验证理论分析。根据结果​​,发现在极间故障期间,交流电网最初对直流侧断路器看到的直流故障电流的贡献相对较小。本文还研究了变流器故障恢复策略。可以发现,在混合式直流断路器成功运行之后,借助无冲击转换控制,直流系统具有良好的电压恢复响应。本文的贡献在于,它使人们对系统响应有了更好的了解,并为直流保护系统的设计提供了一些指导。

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