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Electromagnetic Performance Analysis of Novel Multi-band Metamaterial FSS for Millimeter Wave Radome Applications

机译:新型毫米波雷达天线罩的多频带超材料FSS的电磁性能分析

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摘要

The electromagnetic design and performance analysis of dual/ multi-band metamaterial frequency selective surface (FSS) structures have been carried out for radome applications in microwave and millimeter wave frequency regimes. The proposed metamaterial FSS structure, consisting of cascaded MNG (mu-nega-tive) and DPS (double positive) layers, exhibits dual-band transmission responses at V-band and W-band. Excellent transmission efficiency (more than 95%) has been obtained over the frequency range 45.8-53.1 GHz at first resonance, and from 93.0-97.1 GHz at second resonance. The incorporation of additional DPS layer to the proposed metamaterial-FSS structure facilitates multiband bandpass characteristics at 30 GHz (in Ka-band), 64 GHz (in V-band), and 93.6 GHz (in W-band). The reflection and insertion phase delay characteristics are also analyzed at high incidence angles in view of streamlined airborne nosecone radome applications.
机译:已经针对微波和毫米波频率范围中的天线罩应用进行了双/多频带超材料频率选择表面(FSS)结构的电磁设计和性能分析。拟议的超材料FSS结构由级联的MNG(μ负)层和DPS(双正值)层组成,在V波段和W波段表现出双波段传输响应。在第一次共振时在45.8-53.1 GHz的频率范围内,在第二次共振时从93.0-97.1 GHz的频率范围内,已获得了出色的传输效率(超过95%)。将额外的DPS层合并到建议的metamaterial-FSS结构中可促进30 GHz(Ka波段),64 GHz(V波段)和93.6 GHz(W波段)的多带通特性。鉴于流线型机头鼻锥天线罩的应用,还以高入射角分析了反射和插入相位延迟特性。

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