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A Novel Fault Distance Estimation Method for Voltage Source Converter-Based HVDC Transmission Lines

机译:基于电压源转换器的HVDC传输线的新型故障距离估计方法

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In this work, a digital fault locator has been designed using Arduino for bipolar VSC-HVDC transmission lines based on the ratio of voltage to current signals from source end. Current and voltage signals of only rectifier end have been processed with discrete wavelet transform using DB-4 as the mother wavelet. After the signals are decomposed using wavelet up to level 4, approximate coefficients are taken. Standard deviation is then calculated and given as input to the fault locator designed in Arduino. Fault location logic has been designed in Arduino using the input features. Various fault cases are tested using proposed fault locator to check the effectiveness of the method. Percentage error in fault location estimation is within 1%. Some of the advantages of the proposed digital fault locator are no requirement of communication link, reaches setting is up to 99.8% of line length, percentage error is within 1%, and lower implementation cost. Hence the proposed digital fault locator can be implemented is a real power system effectively.
机译:在这项工作中,基于来自源端的电流与电流信号的电流与电流信号的比率,使用Arduino为双极VSC-HVDC传输线设计了一种数字故障定位器。只有使用DB-4作为母小波的离散小波变换,仅处理了整流端的电流和电压信号。在使用小波分解的信号被分解之后,拍摄近似系数。然后计算标准偏差,并作为输入在Arduino设计的故障定位器的输入。故障定位逻辑已在Arduino使用输入功能设计。使用所提出的故障定位器测试各种故障情况,检查该方法的有效性。故障位置估计中的百分比差值在1%范围内。建议的数字故障定位器的一些优点是通信链路的要求,达到设置高达99.8%的线长度,百分比误差在1%以内,实现成本较低。因此,可以实现所提出的数字故障定位器是实际电力系统。

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