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Enhancing Reflector Aperture Usage Efficiency Using a Coaxial Cavity Antenna: Application to Compact Antenna Test Range

机译:使用同轴腔天线提高反射孔径使用效率:在紧凑的天线测试范围内的应用

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Aperture usage is one of the most important problem in reflector-based compact antenna test range (CATR). Single reflector CATR provides very low aperture usage, normally 30%, because of the effects of edge diffraction. In order to solve this problem, serrated edges and rolled edges are generally chosen along the reflector's edge to reduce the edge diffraction field inside quiet zone (QZ) of the CATR. Even if edge diffraction has been handled by edge treatment, the QZ utilization rate of single reflector CATR (< 50%) is still low. Big reflector is therefore required to produce large QZ, which increases processing difficulty and construction cost. All of this means it is imperative to study reflector aperture distribution function and then design suitable feed's radiation field. In this paper, the aperture power density function of a parabolic reflector fed by an ideal point is theoretically derived and accordingly a coaxial cavity horn feed is designed to make the power density function constant on parabolic aperture surface and then on the QZ aperture, which realizes high QZ usage of the single parabolic CATR.
机译:光圈用法是基于反射器的紧凑型天线测试范围(CATR)中最重要的问题之一。单反反射器CATR提供非常低的光圈使用,通常为30%,因为边缘衍射的影响。为了解决这个问题,通常沿着反射器边缘选​​择锯齿状边缘和轧制边缘,以减小CATR的安静区内(QZ)内的边缘衍射场。即使边缘衍射已经通过边缘处理处理,QZ利用率为单反反射器CATR(<50%)仍然很低。因此需要大反射器来生产大QZ,这增加了加工难度和施工成本。所有这一切都意味着研究反射孔径分布功能,然后设计合适的饲料辐射场。在本文中,由理想的点馈送的抛物面反射器的孔径功率密度函数理论推导,并相应的同轴空腔喇叭进料的目的是使在抛物面孔径表面的功率密度函数保持恒定,然后在QZ孔径,这实现单个抛物线CATR的高QZ使用率。

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