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Fault-Line Identification of HVDC Transmission Lines by Frequency-Spectrum Correlation Based on Capacitive Coupling and Magnetic Field Sensing

机译:基于电容耦合和磁场感应的频谱相关的高压直流输电线路故障线识别

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The protection system of high-voltage direct-current (HVDC) system must detect, identify, and isolate the fault quickly to keep the system stable by only isolating the components that are under fault, while leaving the rest of the network in operation. However, the criteria of under-voltage and voltage-derivative protection systems may fail because there also arises a large voltage drop/variation on the healthy transmission line due to the electromagnetic coupling among HVDC transmission lines incurred by the sharp transient current in the faulty line. Thus, a fault-line identification technique of HVDC transmission lines by frequency-spectrum correlation was proposed in this paper, which is based on evaluating the similarity degree of frequency spectrum between the voltage of a line and the current of another. This technique was implemented and validated by simulation on a ±500 kV HVDC transmission system. The simulation model was integrated with a capacitive-coupling and magnetic-field-sensing-assisted platform comprised two paralleled induction bars, and an array of magnetic sensors to measure voltage and current. This identification technique can enhance the reliability of HVDC system by avoiding the unnecessary outages due to accidental shutdown of healthy lines, fostering the HVDC system development.
机译:高压直流(HVDC)系统的保护系统必须快速检测,识别和隔离故障,以仅通过隔离出现故障的组件来使系统保持稳定,同时使其余网络正常运行。但是,欠压和电压微分保护系统的标准可能会失败,因为由于故障线路中急剧的瞬态电流在高压直流输电线路之间产生电磁耦合,因此在健康输电线路上还会出现较大的压降/变化。因此,在评估一条线路电压与另一条线路的电流频谱相似度的基础上,提出了一种基于频谱相关的高压直流输电线路故障线识别技术。通过在±500 kV高压直流输电系统上进行仿真,实施并验证了该技术。该仿真模型与一个电容耦合和磁场感应辅助平台集成在一起,该平台包括两个平行的感应棒和一组用于测量电压和电流的磁传感器。这种识别技术可以避免因健康线路意外关闭而造成的不必要停机,从而提高HVDC系统的可靠性,从而促进HVDC系统的发展。

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