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Topography measurement of freeform specular surfaces using experimental ray tracing and radial basis functions

机译:使用实验射线跟踪和径向基功能的自由形式镜面的形貌测量

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Optical deflectometric methods with their inherent potential of high channel capacity with regard to information theory has been of great interest for specular surface topography measurement, where the limited dynamic range needs to be considered in the detection plane. Achieving a final smooth reconstructed surface is the next challenge, because the 2D-integration methods for the interpolation of the derived data from such sensors are prone to various sources of error such as path dependency, large data sets and secondary reflections. On the other hand, Radial Basis Functions have been studied in this respect for the last years and their characteristics have been widely discussed. In this paper, we introduce our approach for the 3D measurement of specular surfaces by means of Experimental Ray Tracing and Radial Basis Functions integration. We present simulations and discuss the reconstructed surface and the resulting reconstruction error results.
机译:光学偏转方法具有关于信息理论的高通道容量的固有电位,对于镜面形貌测量非常令人兴趣,其中在检测平面中需要考虑有限的动态范围。实现最终顺利的重建表面是下一个挑战,因为来自这种传感器的导出数据的插值的2D集成方法容易到诸如路径依赖性,大数据集和次级反射的各种误差源。另一方面,在这方面已经在过去几年中研究了径向基函数,并且它们的特征已被广泛讨论。在本文中,我们通过实验射线跟踪和径向基函数集成介绍了我们对镜面3D测量的方法。我们呈现模拟并讨论重建的表面和由此产生的重建误差结果。

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