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FDTD analysis using constant parameter modeling for the calculation of transient responses and voltage profiles on multiconductor overhead transmission lines

机译:使用恒定参数建模进行FDTD分析,用于计算多导体架空传输线上的瞬态响应和电压分布

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摘要

FDTD models have been used since many years for the calculation of transients in overhead transmission lines (OHTLs), modeling them either as lossless or with frequency dependent parameters. Their major drawback, especially in the latter case, is their high computational cost. But FDTD models allow also the efficient calculation of voltage distributions with high discretization along OHTLs. This is significant in tracing transient overvoltages in short line segments in HV substations and in the calculation of signal voltage levels along transmission lines in Power Line Communication applications. Modal domain and phase domain frequency dependent transmission line models can provide accurate transient responses. However, when they are used in multi-segment configurations for the calculation of voltage distribution along transmission lines they may lead to error accumulations, combined with other limitations due to computational requirements or to the approaches in modal or phase domain analysis. In this paper, a constant parameter FDTD model for OHTLs is formulated, incorporating losses due to skin-effect and to the imperfect earth, capable to handle properly also non-homogeneous propagation. The proposed formulation is successfully checked against frequency dependent line models of the ATP/EMTP software, as well as against a formulated frequency dependent FDTD model. The proposed FDTD model proves to be numerically stable and is efficiently applied in voltage profile calculations.
机译:自多年来已经使用了FDTD模型,以计算架空传输线(OHTLS)中的瞬态,将它们建模为无损或频率相关参数。他们的主要缺点,特别是在后一种情况下,是他们的高计算成本。但FDTD型号还允许高效计算具有高离散化的电压分布沿OHTLS。这对于在HV变电站中的短线段中跟踪瞬态过电压以及沿电力线通信应用中的传输线的信号电压电平计算出瞬态过电压。模态域和相位域频率相关传输线模型可以提供精确的瞬态响应。然而,当它们用于计算电压分布的多段配置时,它们可能导致误差累积,与计算要求或模态或相位域分析中的方法相结合。在本文中,制定了用于OHTLS的恒定参数FDTD模型,包括皮肤效应和不完全地球,能够正确处理损耗,也能够适当地处理非均匀的繁殖。建议的配方被成功检查ATP / EMTP软件的频率相关线模型,以及对配方频率相关的FDTD模型。所提出的FDTD模型证明是数值稳定的,有效地应用于电压曲线计算。

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