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Error compensation for three-dimensional profile measurement system

机译:三维轮廓测量系统的误差补偿

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摘要

Three-dimensional (3D) profile measurement is an indispensable process for assisting the manufacture of various optic, especially aspheric surfaces. This work presents the measurement error calibration of a 3D profile measurement system, namely PMI700. Measurement errors induced by measuring tool radius, alignment error and the temperature variation were analyzed through geometry analysis and simulation. A quantitative method for the compensation of tool radius and an alignment error compensation model based on the least square method were proposed to reduce the measurement error. To verify the feasibility of PMI700, a plane and a non-uniform hyperboloidal mirror were measured by PMI700 and interferometer, respectively. The data provided by two systems were high coincident. The direct subtractions of results from two systems indicate RMS deviations for both segments were less than 0.2λ.
机译:三维(3D)轮廓测量是辅助制造各种光学器件(尤其是非球面)的必不可少的过程。这项工作介绍了3D轮廓测量系统(即PMI700)的测量误差校准。通过几何分析和仿真分析了由测量刀具半径,对准误差和温度变化引起的测量误差。为了减少测量误差,提出了一种定量的刀具半径补偿方法和一种基于最小二乘法的对准误差补偿模型。为了验证PMI700的可行性,分别通过PMI700和干涉仪测量了平面镜和非均匀双曲面镜。两个系统提供的数据高度一致。直接从两个系统中减去结果表明,两个段的RMS偏差均小于0.2λ。

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