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Towards the automatization of the Foucault knife-edge quantitative test

机译:迈向福柯刀口定量测试的自动化

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Given the increasing necessity of simple, economical and reliable methods and instruments for performing quality-tests of optical surfaces such as mirrors and lenses, in the recent years we resumed the study of the long forgotten Foucault knife-edge test from the point of view of the physical optics, ultimately achieving a closed mathematical expression that directly relates the knife-edge position along the displacement paraxial axis with the observable irradiance pattern, which later allowed us to propose a quantitative methodology for estimating the wavefront error of an aspherical mirror with precision akin to interferometry. In this work, we present a further improved digital image processing algorithm in which the sigmoidal cost-function for calculating the transient slope-point of each associated intensity-illumination profile is replaced for a simplified version of it, thus making the whole process of estimating the wavefront gradient remarkably more stable and efficient, at the same time, the Fourier based algorithm employed for gradient integration has been replaced as well for a regularized quadratic cost-function that allows a considerably easier introduction of the region of interest (ROI) of the function, which solved by means of a linear gradient conjugate method largely increases the overall accuracy and efficiency of the algorithm. This revised approach of our methodology can be easily implemented and handled by most single-board microcontrollers in the market, hence enabling the implementation of a full-integrated automatized test apparatus, opening a realistic path for even the proposal of a stand-alone optical mirror analyzer prototype.
机译:鉴于越来越需要使用简单,经济和可靠的方法和仪器来进行光学表面(如反射镜和透镜)的质量测试,因此近年来,我们从长期以来一直恢复了对被遗忘的Foucault刀刃测试的研究。物理光学,最终实现了一个封闭的数学表达式,该表达式直接将沿位移近轴的刀刃位置与可观察到的辐照度模式相关联,这随后使我们能够提出一种定量方法,以近似精度估算非球面镜的波前误差进行干涉测量。在这项工作中,我们提出了一种进一步改进的数字图像处理算法,其中将用于计算每个相关强度-照度曲线的瞬态斜率点的S形成本函数替换为它的简化版本,从而使整个估算过程成为可能。波前梯度显着更稳定,更有效,同时,用于梯度积分的基于傅立叶的算法也已被替换为规则化的二次成本函数,从而使引入感兴趣区域(ROI)的难度大大提高。函数,通过线性梯度共轭方法解决,大大提高了算法的整体准确性和效率。市场上大多数单板微控制器都可以轻松实施和处理这种方法的修订方法,从而可以实现完全集成的自动化测试设备,甚至为提出独立光学镜的建议开辟了一条现实的道路。分析仪原型。

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