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Theoretical and Experimental Study of Effective Coupling Length for Transmission Lines Illuminated by HEMP

机译:HEMP照明传输线有效耦合长度的理论和实验研究

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This paper presents theoretical and experimental study of effective coupling length (ECL) for transmission lines illuminated by a high-altitude electromagnetic pulse (HEMP). Based on the transmission line theory, the ECL of transmission lines is analyzed theoretically and numerically first, then the ECL is applied to simply the analysis of nonuniform fields coupling with a power line, and some conclusions are validated experimentally. The impacts of the incident angles, the line height, and the ground conductivity on the ECL are given. The results show that the ECL for transmission lines illuminated by the HEMP defined by the IEC standard can range from tens of meters to hundreds of meters. The results also imply that the coupled current of a load is mainly determined by the field coupling with the line section, which adjoin the load and has the same length as the ECL. This conclusion is also validated by the experiment. This study can be useful to simply the solution of HEMP or nonuniform fields coupling with long lines or large-scale networks, which may be rather tricky when computing the problem directly.
机译:本文介绍了由高空电磁脉冲(HEMP)照射的传输线有效耦合长度(ECL)的理论和实验研究。基于输电线路理论,首先对输电线路的ECL进行了理论和数值分析,然后将其应用于简单的与电力线耦合的非均匀场分析,并通过实验验证了一些结论。给出了入射角,线高和接地电导率对ECL的影响。结果表明,IEC标准定义的HEMP照亮的传输线的ECL范围从几十米到几百米。该结果还暗示,负载的耦合电流主要由与线路段耦合的场决定,该场段与负载相邻并具有与ECL相同的长度。实验也证实了这一结论。这项研究对于简单地解决HEMP或与长线或大型网络耦合的非均匀场的问题可能很有用,这在直接计算问题时可能会非常棘手。

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