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Planar cross-polarized transition to a circular waveguide feed for a 61 GHz dielectric antenna

机译:平面交叉极化过渡到圆形波导馈源,用于61 GHz电介质天线

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This paper presents a novel concept for a planar cross-polarized transition to a 61 GHz dielectric lens antenna. The transition to the circular waveguide antenna feed consists of a combination of a microstrip line and a slot line. Each of these planar waveguides excites the H mode in the circular waveguide with a 90± polarization angle to one another. The developed double layer transition topology was realized on a Rogers 5880 substrate employing the microstrip line on the top and the slot line on the bottom layer. The concept was implemented and tested on a circular waveguide-fed dielectric lens antenna for a 61 GHz radar system. Experimental results show a transition loss of around -2 dB for the microstrip and -3 dB for the slot line feed with excellent crosstalk suppression greater than 40 dB for the two polarization channels. The bandwidth of the built crosspolarized transition is greater than 10 GHz. The results prove that the novel transition concept is very well suited for compact, broadband and low cost polarimetric millimeter-wave radar systems.
机译:本文提出了一个平面交叉极化过渡到61 GHz介电透镜天线的新颖概念。到圆形波导天线馈源的过渡包括微带线和缝隙线的组合。这些平面波导中的每一个在圆形波导中以90°的极化角激发H模式。开发的双层过渡拓扑结构是在Rogers 5880基板上实现的,该基板使用顶层的微带线和底层的缝线。该概念是在用于61 GHz雷达系统的圆波导馈电介电透镜天线上实施和测试的。实验结果表明,微带的过渡损耗约为-2 dB,缝隙线馈电的过渡损耗为-3 dB,两个极化通道的串扰抑制效果均大于40 dB。内置的交叉极化过渡的带宽大于10 GHz。结果证明,新颖的过渡概念非常适合紧凑,宽带和低成本极化毫米波雷达系统。

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