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Gravity distortion compensation via subreflector motion for 64m shaped Cassegrain antenna

机译:通过副反射器运动对64m形状的Cassegrain天线进行重力畸变补偿

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On the degradation of electrical performance due to the main reflector deformation of large shaped Cassegrain antennas, a method for compensation by moving subreflector is presented. A group of best-fit paraboloids are found by least-square fitting the theoretical discrete data. The group of paraboloids are used to fit the deformed main reflector, with the constraint of all these focuses being in line. The best-fit parameters are optimized and the adjustments of subreflector are derived with the ratio of main reflector and subreflector. The adjustments at various attitudes are saved in a look-up table to real-time compensate for main reflector deformation. From the experimental verification on a 64m reflector antenna, satisfactory results are obtained and will be used in practice.
机译:在电气性能的劣化由于大型CASEGRAIN天线的主反射器变形导致的电气性能,提出了一种通过移动子界线的补偿方法。通过至少方形拟合理论离散数据,发现了一组最佳抛物面。抛物面的组用于适合变形的主反射器,所有这些焦点的约束在线。优化最佳拟合参数,并使用主反射器和子反射器的比率导出子折叠的调整。各种态度的调整保存在查找表中以实时补偿主反射器变形。从对64M反射器天线的实验验证,获得令人满意的结果,并将在实践中使用。

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