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Interaction of Electromagnetic Waves with Two-Dimensional Metal Covered with Radar Absorbing Material and Plasma

机译:电磁波与覆盖有雷达吸收材料和等离子体的二维金属的相互作用

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摘要

A two-dimensional metal model is established to investigate the stealth mechanisms of radar absorbing material (RAM) and plasma when they cover the model together. Using the finite-difference time-domain (FDTD) method, the interaction of electromagnetic (EM) waves with the model can be studied. In this paper, three covering cases are considered: a. RAM or plasma covering the metal solely; b. RAM and plasma covering the metal, while plasma is placed outside; c. RAM and plasma covering the metal, while RAM is placed outside. The calculated results show that the covering order has a great influence on the absorption of EM waves. Compared to case a, case b has an advantage in the absorption of relatively high-frequency EM waves (HFWs), whereas case c has an advantage in the absorption of relatively low-frequency EM waves (LFWs). Through the optimization of the parameters of both plasma and RAM, it is hopeful to obtain a broad absorption band by RAM and plasma covering. Near-field attenuation rate and far-field radar cross section (RCS) are employed to compare the different cases.
机译:建立了二维金属模型,以研究雷达吸收材料(RAM)和等离子一起覆盖模型时的隐身机制。使用时域有限差分(FDTD)方法,可以研究电磁波与模型的相互作用。在本文中,考虑了三种覆盖情况: RAM或等离子仅覆盖金属; b。 RAM和等离子覆盖金属,而等离子放置在外部; C。 RAM和等离子覆盖金属,而RAM放置在外部。计算结果表明,覆盖顺序对电磁波的吸收有很大影响。与情况a相比,情况b在吸收相对高频的EM波(HFW)方面具有优势,而情况c在吸收相对低频的EM波(LFWs)方面具有优势。通过优化等离子体和RAM的参数,希望通过RAM和等离子体覆盖获得较宽的吸收带。使用近场衰减率和远场雷达横截面(RCS)来比较不同情况。

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