首页> 外文期刊>The Journal of Engineering >Fault location method for high-voltage direct current transmission line using incident current travelling waves
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Fault location method for high-voltage direct current transmission line using incident current travelling waves

机译:利用入射电流行波的高压直流输电线路故障定位方法

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The reflection coefficient of the travelling wave is different with different frequencies because of the inductance and capacitive elements on the boundary of the DC transmission line, which leads to the oscillation of the travelling wave. It is difficult to obtain the wave head's arrival time accurately using travelling wave method to locate fault because of the oscillation. The current travelling wave is the superposition of the incident current travelling wave and the reflected current travelling wave. There is no oscillation in the incident wave. Therefore, a method using incident current wave for fault location is proposed here. The initial current travelling wave and the transmission line boundary function are used to calculate the incident current travelling wave, and the incident wave is used to locate fault. The Prony decomposition algorithm is used to identify boundary function using the initial current travelling wave generated in specific fault condition. PSCAD simulation shows that the influence of oscillations of travelling wave can be eliminated by using incident current wave to locate faults, and the accuracy of fault location is improved.
机译:由于直流传输线边界上的电感和电容元件,行波的反射系数在不同的频率下会有所不同,从而导致行波的振荡。由于振荡,使用行波方法来定位故障很难准确地获得波头的到达时间。电流行波是入射电流行波和反射电流行波的叠加。入射波没有振荡。因此,在此提出一种使用入射电流波进行故障定位的方法。初始电流行波和传输线边界函数用于计算入射电流行波,入射波用于定位故障。 Prony分解算法用于使用在特定故障条件下生成的初始电流行波来识别边界函数。 PSCAD仿真表明,利用入射电流波定位故障可以消除行波振荡的影响,提高了故障定位的准确性。

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