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Zooming and Scanning Gregorian Confocal Dual Reflector Antennas

机译:缩放和扫描格里高利共聚焦双反射器天线

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摘要

The zooming and scanning capabilities of a Gregorian confocal dual reflector antenna are described. The basic antenna configuration consists of two oppositely facing paraboloidal reflectors sharing a common focal point. A planar feed array is used to illuminate the subreflector allowing the antenna to scan its beam. The resulting quadratic aberrations can be compensated by active mechanical deformation of the subreflector surface, which is based on translation, rotation and focal length adjustment. In order to reduce the complexity of the mechanical deformation, least squares fit paraboloids are defined to approximate the optimal correction surface. These best fit paraboloids considerably reduce scanning losses and pattern degradation. This work also introduces two different zooming techniques for the Gregorian confocal dual reflector antenna: the first consists of introducing a controlled quadratic path error to the main reflector aperture; and the second is based on reducing the size of the radiating aperture of the feeding array.
机译:描述了格里高利共焦双反射器天线的缩放和扫描能力。基本天线配置由两个面对面的抛物面反射器组成,它们共享一个公共焦点。平面馈源阵列用于照亮子反射器,从而允许天线扫描其波束。产生的二次像差可以通过副反射镜表面的主动机械变形来补偿,该变形基于平移,旋转和焦距调整。为了降低机械变形的复杂性,定义了最小二乘拟合抛物面以逼近最佳校正表面。这些最合适的抛物面大大减少了扫描损耗和图案退化。这项工作还为格里高利共焦双反射器天线引入了两种不同的缩放技术:第一种方法是对主反射器孔径引入受控的二次路径误差;第二种是基于减小馈电阵列的辐射孔的尺寸。

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