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首页> 外文期刊>Applied optics >Reverse optimization reconstruction of aspheric figure error in a non-null interferometer
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Reverse optimization reconstruction of aspheric figure error in a non-null interferometer

机译:非零干涉仪中非球面图形误差的逆向优化重建

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摘要

Aspheric non-null testing, as an alternative to the traditional null testing, achieves more flexible measurements. However, figure-error reconstruction in non-null tests has always been difficult due to the presence of retrace error. A novel method with reverse optimization is proposed for aspheric figure-error reconstruction in a non-null interferometer. It is a generalized and effective approach based on system modeling and polynomial fitting. An optimization function is set with polynomial coefficients of the desired figure error as variables and those of the detected experimental wavefront as optimization targets. Through the reverse optimization process with iterative ray tracing, the optimal solutions can be extracted and the desired figure error is reconstructed with a simple fitting procedure. Numerical simulations verifying the high accuracy of the proposed method are presented with error considerations. A set of experiments has also been carried out to demonstrate the validity and repeatability of this method.
机译:非球面非空值测试可以替代传统的空值测试,从而实现更灵活的测量。但是,由于存在回溯误差,非空测试中的图形误差重构一直很困难。针对非零干涉仪中的非球面图形误差重建,提出了一种具有逆向优化的新方法。它是一种基于系统建模和多项式拟合的通用有效方法。设置优化函数,将所需图形误差的多项式系数作为变量,将检测到的实验波前的多项式系数作为优化目标。通过具有迭代射线跟踪的反向优化过程,可以提取最佳解,并通过简单的拟合过程来重建所需的图形误差。数值仿真验证了该方法的高精度,并给出了误差考虑。还进行了一组实验,以证明该方法的有效性和可重复性。

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