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Separation of form from orientation in 3D measurements of aspheric surfaces with no datum

机译:在无基准的非球面3D测量中将形状与方向分离

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摘要

Measurement and characterisation of 3D form to maintain manufacturing quality has particular problems in cases such as lenses which do not generally have a clear measurement datum. A 3D-form measurement includes information about the form, the orientation and the position of the surface under test. Orientation and position can be design parameters or may result from misalignment of the test specimen on a measurement table. In either case, it is necessary to separate form from orientation and position if the data-set is to be fitted and compared with an "ideal" surface. In this paper two pre-processing algorithms are presented and examples given of the separation of form from orientation and position. The algorithm is applied to simulated data-sets consisting of up to 26,000 discrete points on a square grid, simulating the measurement of an aspheric lens in 3D. The rotationally symmetric dataset is translated for a distance X{sub}0, Y{sub}0 and z{sub}0 and rotated about two axes, x and y, to simulate misalignment. To simulate inaccuracies from a manufacturing process, normally distributed random noise is superimposed on the ideal surface. An application of preprocessing using a real data-set is also shown. Furthermore, form fitting is addressed and the interpretation of form by decomposition of the data into error types is discussed.
机译:为保持制造质量而对3D形式进行测量和表征在诸如镜头等通常没有清晰测量数据的情况下具有特殊的问题。 3D形式的测量包括有关被测表面的形式,方向和位置的信息。方向和位置可以是设计参数,也可以是由于测试样品在测量台上未对准而导致的。在任何一种情况下,如果要拟合数据集并将其与“理想”表面进行比较,则必须将形状与方向和位置分开。本文提出了两种预处理算法,并给出了从方向和位置分离形式的示例。该算法适用于模拟数据集,该数据集由方格上最多26,000个离散点组成,可模拟3D中非球面透镜的测量。将旋转对称数据集平移距离X {sub} 0,Y {sub} 0和z {sub} 0,并绕两个轴x和y旋转,以模拟未对准。为了模拟制造过程中的误差,正态分布的随机噪声会叠加在理想表面上。还显示了使用真实数据集进行预处理的应用程序。此外,讨论了形式拟合,并讨论了通过将数据分解为错误类型来解释形式。

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