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A New Approach to Compute Grounding Impedance of Rods in a Frequency Dependent Multi-layer Soil

机译:一种新方法,以计算频率依赖性多层土壤杆的接地阻抗

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Long cylindrical rods are commonly employed to grounding system in transmission lines and they can be buried in stratified soils. In this condition, the grounding impedance is significantly modified by the presence of another layer of soil where analytical formulae are not found in literature. Additionally, frequency dependence of soil parameters (resistivity $ho$ and permittivity $arepsilon) $ is an important effect that has to be taken in to account for a precise electromagnetic analysis. To tackle these problems, a new approach is proposed to compute grounding impedance of vertical rods buried in a stratified soil. This approach is based on the equivalent quadripole representation rod seen as short transmission lines in each layer of ground. In this paper, the frequency dependence of soil parameters is considered individually in soil composed by several layers of ground. This approach is compared with numerical and analytical methods proposed in the literature and has presented a good agreement. Simulation results show that adding another layer of soil and considering the frequency dependence of electrical parameters of soil cause a significant reduction in the voltage peaks of GPR (Grounding Potential Rise) waveforms.
机译:长圆柱形杆通常用于传输线的接地系统,它们可以埋在分层的土壤中。在这种情况下,通过在文献中未发现另一种土壤层的存在,显着改变接地阻抗。另外,土壤参数的频率依赖性(电阻率$ Rho和允许$ varepsilon)$是必须采取的重要效果,以便考虑到精确的电磁分析。为了解决这些问题,提出了一种新的方法来计算埋在分层土壤中的垂直杆的接地阻抗。该方法基于等效的四极表示杆,被视为每层地面的短传输线。在本文中,土壤参数的频率依赖性在由几层地面组成的土壤中被认为是单独的。将这种方法与文献中提出的数值和分析方法进行了比较,并提出了良好的一致性。仿真结果表明,添加另一层土壤并考虑到土壤电参数的频率依赖性导致GPR(接地电位上升)波形的电压峰值显着降低。

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