An Analysis of Frequency-Dependent Soil Models: Influence on the Transient Responses

T. F. Pascoalato, A. D. de Araújo, J. Colqui, Sérgio Kurokawa, J. Filho
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Abstract

Longitudinal impedance and transversal admittance of overhead transmission line (OHTL) are dependent on the ground which the line conductors are located. Several models in the literature consider the soil as an ideal conductor which the resistivity ρ and relative permittivity εr are constants. However, frequency-dependent soils are characterized by frequency-dependent (FD) electrical parameters (ρ(f) and εr(f)) which different formulations to represent the soil with constant and FD parameters have been developed. In order to obtain a precise transient response, these formulations must be included to compute the ground-return impedance and admittance of a OHTL. In this article, soils of low and high resistivities are studied considering the constant and FD soil models. Simulations are carried out in a high frequency range for soil parameters (resistivity and relative permittivity), ground-return impedance, attenuation constant and phase velocity. Then, the transient voltages are calculated for OHTLs located above real and constant parameter soils generated by two types of disturbances: an energization maneuver and a lightning direct strike. The numerical results show significant differences between the responses obtained with the constant and FD soil models, which these variations are more pronounced for soils of high resistivity and for a short OHTL.
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频率相关土壤模型分析:对瞬态响应的影响
架空输电线路的纵向阻抗和横向导纳与导线所处的地有关。文献中的几种模型都把土壤看作是电阻率ρ和相对介电常数εr为常数的理想导体。然而,频率相关土壤的特征是频率相关(FD)的电参数(ρ(f)和εr(f)),已经开发出不同的公式来表示具有恒定和FD参数的土壤。为了获得精确的瞬态响应,必须使用这些公式来计算OHTL的地回阻抗和导纳。本文研究了低电阻率和高电阻率的土,分别考虑了常数土和FD土模型。在高频范围内对土壤参数(电阻率和相对介电常数)、地回阻抗、衰减常数和相速度进行了模拟。然后,计算了在通电机动和雷击两种干扰下,位于实参数和定参数土壤上的OHTLs的瞬态电压。数值计算结果表明,常数土模型与FD土模型的响应存在显著差异,这种差异在高电阻率土和短OHTL土中更为明显。
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