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A piecewise deformable subreflector for compensation of Cassegrain main reflector errors

机译:用于补偿卡塞格伦主反射镜误差的分段可变形副反射镜

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The subreflector presented is built of an aggregate of rigid panels, which are controlled by a small number of actuators. An algorithm is described to calculate the actuator motions for a set of given surface distortions. It is assumed that the surface distortions, at different elevation angles, are known a priori. Geometrical optics is used to describe the aperture field distribution and to predict the improvement in performance. Computer modeling of main and subreflectors was used to test the design. This design is suggested for the improvement of a hypothetical radio telescope. In this example, it is predicted that the effective surface errors, due to gravitational distortions, may be reduced to 33% of their uncorrected level with a 48-plate subreflector. Compensation with other subreflector configurations is also investigated.
机译:呈现的副反射器由刚性面板的集合构成,这些面板由少量的执行器控制。描述了一种算法,用于为一组给定的表面变形计算执行器运动。假定先验地知道在不同仰角处的表面变形。几何光学用于描述孔径场分布并预测性能的提高。主反射镜和副反射镜的计算机建模用于测试设计。建议该设计用于改进假想射电望远镜。在该示例中,可以预测由于重力畸变而导致的有效表面误差可以通过48片副反射镜降低到其未校正水平的33%。还研究了其他副反射器配置的补偿。

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