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首页> 外文期刊>Electric power systems research >Time domain generalized telegrapher's equations for the electromagnetic field coupling to finite-length wires buried in a lossy half-space
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Time domain generalized telegrapher's equations for the electromagnetic field coupling to finite-length wires buried in a lossy half-space

机译:电磁场耦合到埋在有损半空间中的有限长导线上的时域广义电报方程

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The paper deals with a derivation of a time domain variant of the generalized telegrapher's equations for transient electromagnetic field coupling to buried wires. The formulation is based on the thin wire antenna theory in the time domain. The influence of a lossy half-space is taken into account by means of the time dependent reflection coefficient approximation arising from the modified image theory (MIT), while the per-unit-length surface impedance accounts for the conductor losses. The obtained space-time integral expressions are handled analytically. The concept of the scattered voltage is naturally included in the full model formulation. Computational examples are given for the induced currents along the buried wire and compared to the results obtained by using the transmission line (TL) approximation. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文讨论了用于将瞬态电磁场耦合到埋线的广义电报方程的时域变体推导。该公式基于时域中的细线天线理论。通过修改图像理论(MIT)产生的时间相关反射系数近似值,可以考虑到有损耗的半空间的影响,而每单位长度的表面阻抗则说明了导体损耗。对获得的时空积分表达式进行解析处理。完整模型公式自然包含了散射电压的概念。给出了沿着埋线的感应电流的计算示例,并将其与使用传输线(TL)近似得到的结果进行了比较。 (C)2018 Elsevier B.V.保留所有权利。

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