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The design research of the test support structure for a large-diameter main mirror

机译:大直径主镜测试支撑结构的设计研究

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摘要

The accuracy of the main mirror surface shape measurement on ground is vital because of the importance of the main mirror in a optical remote sensor. Generally speaking, the main effects of the mirror surface shape measurement accuracy are due to the optical measurement system and support structure. The aim of this thesis is researching the design of the mirror shape measurement support structure. The main mirror discussed in this paper equipped with 650mm diameter. The requirements of PV and RMS for surface shape are no more than 0.136 λ and 0.017 λ. respectively while λ is determined as 632.8nm. At present, the on ground adjustment methods of camera lens are optical axis horizontal and gravity discharging. In order to make the same condition between camera lens adjustment and main mirror operating, the surface shape measurement of main mirror should keep optical axis horizontal condition for mirror either. The support structure of the mirror introduced in this paper is able to extremely reduce the surface shape distortion caused by the effects of support structure mostly. According to the simulating calculation, the variation of main mirror surface shape is no more than 0.001 λ . The result is acceptable for camera adjustment. Based on the measurement support structure mentioned before, the main mirror could rotate 360-degree under the condition of optical axis horizontal; the four-direction measurement for mirror is achieved. Eliminate the effects of ground gravity for surface shape measurement data, the four-direction mirror shape error is controlled no more than 0.001 λ on this support structure which calculated by simulation.
机译:由于在光学遥感器中主镜的重要性,因此在地面上主镜表面形状测量的准确性至关重要。一般而言,镜面形状测量精度的主要影响归因于光学测量系统和支撑结构。本文的目的是研究镜面形状测量支撑结构的设计。本文讨论的主镜配备了650mm直径。表面形状的PV和RMS要求不超过0.136λ和0.017λ。而λ被确定为632.8nm。目前,相机镜头的地面调整方法是水平光轴和重力释放。为了使相机镜头调整和主镜操作之间的条件相同,主镜的表面形状测量也应保持镜的光轴水平状态。本文介绍的反射镜的支撑结构能够极大地减少由于支撑结构的影响而引起的表面形状畸变。根据模拟计算,主镜表面形状的变化不超过0.001λ。该结果对于相机调整是可以接受的。在前面提到的测量支撑结构的基础上,主镜在光轴水平的情况下可以旋转360度。实现了镜子的四向测量。消除地面重力对表面形状测量数据的影响,在该支撑结构上模拟计算得出的四向镜形状误差控制在0.001λ以下。

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