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Design of a novel high precision opto-electronic levelmeter

机译:新型高精度光电液位计的设计

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For currently market available levelmeter can not meet the requirement for measuring the azimuth mounting of the LAMOST, this paper presents a novel design scheme of an opto-electronic levelmeter with needed high precision. The levelmeter is essentially a combination of an optical front end and a computer aided measuring back end. The light from a point source is firstly turned to be parallel and reflected by a tip-tilt mirror which keeps pointing to the zenith and then imaged onto a CCD target through optical system, afterwards, the position of the image spot is processed by computer software to give measurement results. By rotating the LAMOST mounting about azimuth axis with the levelmeter on it, the axis system is measured, and if the measured azimuth axis is not perpendicular enough, the image spot on CCD target is to offset some distance by which the tilt angle of the axis can be evaluated. The design principle and data processing of the levelmeter are detailed systematically in this paper. Experiment results confirmed that the accuracy of the levermeter is up to 0.043" beyond that required by the technical specification of the LAMOST. Also, the novel levermeter is applicable to measuring azimuth axes of other telescopes. 1
机译:针对目前市场上无法满足测量LAMOST方位角安装要求的液位计,本文提出了一种具有高精度的光电液位计的新颖设计方案。液位计本质上是光学前端和计算机辅助测量后端的组合。来自点光源的光首先被转换为平行光,并被始终保持指向天顶的倾斜镜反射,然后通过光学系统成像到CCD目标上,然后通过计算机软件处理图像光斑的位置给出测量结果。通过在水平仪上绕着方位轴旋转LAMOST支架,可以测量轴系统,如果测得的方位轴不够垂直,则CCD目标上的像点将偏移一定距离,从而使轴的倾斜角度偏移可以评估。本文对液位计的设计原理和数据处理进行了系统的详细介绍。实验结果证实,该拉力计的精度比LAMOST的技术规格要求高0.043英寸。此外,该新型拉力计可用于测量其他望远镜的方位轴。1

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