首页> 外文会议>2016 Third International Conference on Electrical, Electronics, Computer Engineering and their Applications >Detection of the faulted network element using frequency spectrum features of zero-sequence current under transient earth faults in the network with neutral grounding through Peterson-coil
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Detection of the faulted network element using frequency spectrum features of zero-sequence current under transient earth faults in the network with neutral grounding through Peterson-coil

机译:在通过中性点接地的网络中通过Peterson-coil的电网中的瞬时接地故障下的零序电流频谱特征来检测故障网络元件

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The paper analyzes the amplitude-frequency spectra of zero-sequence current in the network with neutral grounding through Peterson-coil under transient earth faults. As the assumed equivalent circuit contains elements with linear current-voltage characteristic, harmonic components of the spectrum are calculated separately for discharge current of the faulted phase, charge current of the unfaulted phases and excess charge drain current followed by the arc blowout. The resulting current spectra are calculated given that current on the faulted line at all stages of transient earth fault flow in the same direction. However, on the unfaulted line drain current flows in the opposite direction to discharge and charge current. We established that in the spectrum of zero-sequence current under transient earth faults the highest amplitude refers to harmonics at frequency near to the frequency of excess charge drain current which, in turn, is near to commercial frequency. With respect to this frequency, in amplitude-frequency spectra we can distinguish two significant areas. At frequency lower than commercial frequency, harmonic amplitudes on the faulted line exceed the harmonic amplitudes on the unfaulted line. At frequency higher than commercial frequency on the contrary: harmonic amplitudes on the unfaulted line exceed harmonic amplitudes on the faulted line. Therefore, as a sign of the faulted line we suggest using harmonic level at frequency lower than commercial frequency.
机译:通过瞬变接地故障,通过彼得森线圈通过中性点接地的电网中的零序电流幅值频谱图进行了分析。由于假定的等效电路包含具有线性电流-电压特性的元件,因此将分别针对故障相的放电电流,未故障相的充电电流和过大的电荷消耗电流(随后是电弧放电)计算频谱的谐波分量。在瞬态接地故障所有阶段的故障线上有相同方向的电流的情况下,计算得出的电流谱。但是,在无故障线路上,漏极电流沿相反的方向流动,以释放和充电电流。我们确定在瞬态接地故障下的零序电流频谱中,最高振幅是指谐波,其频率接近于多余电荷消耗电流的频率,而后者又接近于商用频率。关于该频率,在幅度频谱中,我们可以区分两个重要区域。在低于商用频率的频率下,故障线路上的谐波幅度超过未故障线路上的谐波幅度。相反,在高于商业频率的频率上:无故障线路上的谐波幅度超过故障线路上的谐波幅度。因此,作为故障线路的标志,我们建议在低于商用频率的频率下使用谐波电平。

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