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Design of Wideband Omnidirectional Dual-Reflector Antennas in Millimeter Waves

机译:毫米波宽带全向双反射天线设计

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The work investigates the electromagnetic performance of omnidirectional dual-reflector antennas designed to operate with a frequency bandwidth larger than 45% (25-40 GHz). We consider two antenna configurations, distinguished from each other by two different optical ray mappings. A conventional coaxial horn is designed to ensure vertical polarization and stable primary radiation pattern along the operating bandwidth. By employing a geometrical optics synthesis technique, the omnidirectional reflectors are shaped to maximize the directivity of the broadside secondary radiation patterns. For the synthesis, we employ different aperture power distributions and investigate their effect on the antenna gain and return loss when operating over the 40% frequency bandwidth. To access the antenna performance, a full-wave electromagnetic analysis based on the combination of mode matching and method of moments is employed.
机译:这项工作研究了全向双反射天线的电磁性能,这些天线设计用于在大于45%(25-40 GHz)的带宽下工作。我们考虑两种天线配置,它们通过两种不同的光线映射彼此区分开。传统的同轴喇叭被设计成在工作带宽上确保垂直极化和稳定的主辐射方向图。通过采用几何光学合成技术,可以对全向反射器进行定形,以使宽边二次辐射图的方向性最大化。对于合成,我们采用了不同的孔径功率分布,并研究了它们在40%频率带宽上工作时对天线增益和回波损耗的影响。为了获得天线性能,采用了基于模式匹配和矩量法相结合的全波电磁分析。

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