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A Novel Fault Monitoring and Location System for HVDC Electrode Line

机译:新型高压直流输电线路故障监测与定位系统

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The fault of electrode line can pose serious threat to the safe and stable operation of the High Voltage Direct Current (HVDC) system, but it is quite difficult to detect the line fault by normal ways because the grounding electrode line is usually at ground potential. This paper presents a novel fault monitoring and location system for HVDC electrode line, which is based on the TDR technique and specially designed according to the characteristics of electrode line. The system injects differential mode voltage pulse to monitor the electrode line, and reduces the cancellation of differential mode signal through series reactance. Theoretically, this system is immune to the interference signal from the HVDC system, and can greatly improve the Signal-to-Noise Ratio (SNR) of the reflected pulse. In addition, the system uses a waveform comparison algorithm to solve the problem of line parameter uniform and slowly changing, which could make much trouble to the normal TDR methods. For this fault monitoring and location system, the output pulse amplitude is designed as up to 500 V, the pulse width range is about 1-5 $mu$s, and the pulse sampling rate is as high as 10 MHz. Simulation results and field applications show that this system can achieve excellent fault monitoring and location result for the HVDC electrode line, with the fault location accuracy better than 300m.
机译:电极线的故障会对高压直流(HVDC)系统的安全和稳定运行造成严重威胁,但由于接地电极线通常处于接地电位,因此以常规方式检测线路故障非常困难。本文提出了一种新的高压直流输电线路故障监测与定位系统,该系统基于TDR技术,并根据电极线路的特点进行了专门设计。该系统注入差模电压脉冲以监控电极线,并通过串联电抗减少差模信号的抵消。从理论上讲,该系统不受HVDC系统的干扰信号的影响,并且可以大大提高反射脉冲的信噪比(SNR)。另外,系统使用波形比较算法来解决线路参数均匀且变化缓慢的问题,这可能给常规的TDR方法带来很大麻烦。对于此故障监视和定位系统,输出脉冲幅度被设计为高达500 V,脉冲宽度范围约为1-5μs,脉冲采样率高达10 MHz。仿真结果和现场应用表明,该系统对高压直流输电电极线具有良好的故障监测和定位效果,故障定位精度优于300m。

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