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3-D Bifocal Design Method for Dual-Reflectarray Configurations With Application to Multibeam Satellite Antennas in Ka-Band

机译:双反射阵列配置的3-D双焦点设计方法及其在 Ka -band的多波束卫星天线中的应用

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This paper describes a 3-D bifocal design technique for offset dual-reflectarray antennas (DRAAs) with application to multibeam satellite antennas in Ka-band. The bifocal technique has been used to obtain beams closer than those obtained with a single-focus antenna and, at the same time, to improve the performance of the extreme beams. The technique has been applied to design a multibeam DRAA in an offset compact range configuration to provide 1.12 degrees separation between adjacent beams at 19.7 GHz. A small-scale bifocal DRAA demonstrator has been designed, fabricated, and tested. The demonstrator generates 10 beams alternating in dual-linear polarization when the antenna is illuminated by five adjacent feeds, but the technique can be extended to circular polarization. The results are in a good agreement with the design requirements in the frequency band from 19.2 to 20.2 GHz.
机译:本文介绍了用于偏移双反射阵列天线(DRAA)的3-D双焦点设计技术,并将其应用于Ka波段的多波束卫星天线。双焦点技术已用于获得比单焦点天线获得的波束更近的波束,同时还改善了极端波束的性能。该技术已应用于设计偏移紧凑范围配置中的多光束DRAA,以在19.7 GHz的相邻波束之间提供1.12度的间隔。小型双焦点DRAA演示器已经设计,制造和测试。当天线由五个相邻的馈源照亮时,演示器会产生10条双线性极化的波束,但是该技术可以扩展到圆极化。结果与19.2至20.2 GHz频段的设计要求非常吻合。

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