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Beam scanning in the Cassegrain antenna system by the use of subreflector movement

机译:通过使用子反射镜移动,在卡塞格伦天线系​​统中进行波束扫描

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It is noted that the ability to beam scan by suboptic motion is particularly useful in large space antenna systems where main reflector motion would disturb the mission platform. With the use of an offset Cassegrain configuration, the main beam can be scanned by moving only the subreflector. This method of beam scanning results in a reduction of moving mass of more than an order of magnitude. The optimal scan path for the subreflector can be determined through a geometrical optics optimization of subreflector position to minimize aperture plane phase error for each desired angle of scan. The scan path optimization method was tested by optimizing an offset Cassegrain antenna system. The optimized system was tested by computing far-field patterns using the TICRA GRASP7 electromagnetics package at 10 GHz.
机译:注意,通过亚光运动进行波束扫描的能力在大空间天线系统中特别有用,在该系统中,主反射器运动会干扰任务平台。通过使用偏移卡塞格伦配置,可以通过仅移动副反射镜来扫描远光。这种束扫描方法导致运动质量的减少超过一个数量级。可以通过副反射镜位置的几何光学优化来确定副反射镜的最佳扫描路径,以使每个所需的扫描角度的光阑平面相位误差最小。通过优化偏置卡塞格林天线系统测试了扫描路径优化方法。通过使用10 GHz的TICRA GRASP7电磁封装计算远场模式,对优化后的系统进行了测试。

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