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首页> 外文期刊>IEICE Transactions on Communications >Analytic and Numerical Modeling of Normal Penetration of Early-Time (El) High Altitude Electromagnetic Pulse (HEMP) into Dispersive Underground Multilayer Structures
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Analytic and Numerical Modeling of Normal Penetration of Early-Time (El) High Altitude Electromagnetic Pulse (HEMP) into Dispersive Underground Multilayer Structures

机译:早期(El)高空电磁脉冲(HEMP)垂直渗透进入分散地下多层结构的解析和数值模型

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摘要

In this paper, penetration phenomenon of an early-time (El) high altitude electromagnetic pulse (HEMP) into dispersive underground multilayer structures is analyzed using electromagnetic modeling of wave propagation in frequency dependent lossy media. The electromagnetic pulse is dealt with in the power spectrum ranging from 100 kHz to the 100 MHz band, considering the fact that the power spectrum of the El HEMP rapidly decreases 30 dB below its maximum value beyond the 100 MHz band. In addition, the propagation channel consisting of several dielectric materials is modeled with the dispersive relative permittivity of each medium. Based on source and channel models, the propagation phenomenon is analyzed in the frequency and time domains. The attenuation levels at a 100 m underground point are observed to be about 15 and 20 dB at 100 kHz and 1 MHz, respectively, and the peak level of the penetrating electric field is found 5.6kV/m. To ensure the causality of the result, we utilize the Hilbert transform.
机译:在本文中,使用与频率相关的有损耗介质中的波传播电磁模型,分析了早期(El)高空电磁脉冲(HEMP)进入分散地下多层结构的渗透现象。考虑到El HEMP的功率频谱在超过100 MHz频带的最大值以下迅速降低了30 dB,这一事实是在100 kHz至100 MHz频带范围内处理电磁脉冲的。另外,用每种介质的分散相对介电常数对由几种介电材料组成的传播通道进行建模。基于源模型和信道模型,分析了频域和时域中的传播现象。在地下100 m处的衰减水平在100 kHz和1 MHz时分别约为15和20 dB,穿透电场的峰值水平为5.6kV / m。为了确保结果的因果关系,我们使用了希尔伯特变换。

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