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The Lightning Electromagnetic Pulse Coupling Effect Inside the Shielding Enclosure With Penetrating Wire

机译:穿透线屏蔽罩内部的雷电电磁脉冲耦合效应

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摘要

To study the lightning electromagnetic pulse (LEMP) coupling and protection problems of shielding enclosure with penetrating wire, we adopt the model with proper size which is close to the practical engineering and the two-step finite-difference time-domain (FDTD) method is used for calculation in this paper. It is shown that the coupling voltage on the circuit lead inside the enclosure increases about 34 dB, when add 1.0 m long penetrating wire at the aperture, comparing with the case without penetrating wire. Meanwhile, the waveform, has the same wave outline as the lightning current source, shows that the penetrating wire brings a large number of low frequency component into the enclosure. The coupling effect in the enclosure will reduce greatly when penetrating wire has electrical connection with the enclosure at the aperture and the coupling voltage increase only about 12 dB than the case without penetrating wire. Moreover, the results show that though the waveguide pipe can reduce the coupling effect brought by the penetrating wire, the exposing part of penetrating wire can increase the coupling when the penetrating wire outside the enclosure is longer than the waveguide pipe and the longer the exposing part is, the stronger the coupling is.
机译:为了研究穿透线屏蔽罩的雷电电磁脉冲(LEMP)耦合和保护问题,我们采用与实际工程相近的合适尺寸模型,采用两步有限差分时域(FDTD)方法。用于本文的计算。结果表明,与没有穿透线的情况相比,当在孔处添加1.0 m长的穿透线时,外壳内部电路导线上的耦合电压增加了约34 dB。同时,该波形具有与雷电流源相同的波形,表明穿透线将大量低频分量带入外壳。当穿透线与外壳在孔处电连接并且耦合电压仅比没有穿透线的情况增加约12 dB时,外壳中的耦合效果将大大降低。而且,结果表明,尽管波导管可以减小由穿透线带来的耦合效果,但是当外壳外部的穿透线比波导管更长并且暴露部分越长时,穿透线的暴露部分可以增加耦合。是,耦合越强。

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