特高压直流输电线路故障测距方法

Fault Ranging Method for UHVDC Transmission Lines

  • 摘要: 考虑到现存的行波测距方法中,其中小波模极大值法对基函数与分解尺度要求较高,而在希尔伯特黄变换(Hilbert-Huang transform,HHT)过程中应用经验模态分解(Empirical mode decomposition,EMD)可能导致模态混叠的问题。为了解决上述问题,针对特高压直流输电线路故障测距目前亟待解决的输电线路长度过长、故障发生概率过大以及测距精度相对较低等问题,提出一种将变分模态分解(Variational mode decomposition,VMD)和Teager能量算子相结合的特高压直流输电线路故障测距方法。当架空线路发生单极接地故障时,通过电磁暂态仿真(Power systems computer aided design,PSCAD)以获得故障电流的行波数据,解耦后采用线模电流行波信号进行VMD分解获得最优模态分量(Intrinsic mode function,IMF),使用Teager能量算子将高频模态分量的能量突变点提取出来,将能量极大值所表示的时刻代入双端行波测距式中,就可以精确确定故障点位置。通过将PSCAD与Matlab相结合进行仿真验证,对测距方法的精度进行对比分析,结果表明该方法在不同的故障位置以及过渡电阻都能够保证测距的准确性。

     

    Abstract: Considering that the wavelet modulus maximum method in the existing traveling wave ranging method has high requirements for the basis function and decomposition scale when applied, and modal aliasing will occur when empirical mode decomposition(EMD) is applied in the process of Hilbert-Huang transform(HHT), in order to solve the above problems and solve the problems of transmission line length is too long, the probability of fault occurrence is too large, and the ranging accuracy is relatively low Fault ranging method of UHVDC transmission line combined with Teager energy operator. When a unipolar ground fault occurs in the overhead line, the fault current traveling wave data is simulated by PSCAD, and the variational mode decomposition(VMD) decomposition of the line mode current traveling wave signal is used to obtain the optimal IMF modal component after decoupling, and the energy mutation point of the high-frequency modal component is extracted by using Teager energy operator, and the moment represented by the energy maximum value is substituted into the double-ended traveling wave ranging formula, and the precise location of the fault point can be obtained. Through the comparative analysis of PSCAD combined with Matlab simulation verification, the accuracy of the ranging method can be guaranteed in different fault locations and transition resistance.

     

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