利用逆源问题和相移技术的二维光学参数测量:光学方案建模

G. Stoilov
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引用次数: 0

摘要

反光源问题是利用通过物体的光的傅立叶反变换来解决的。提出了在测量过程中获取相位分布信息的移相技术。这样就可以计算物体每一点的传输系数和相位延迟。参考测量的加入消除了测量系统参数的影响。介绍了理论背景。给出了光学方案中各重要因素对精度影响的计算机模拟结果。对不同位置的基本光学元件和不精确相移进行了仿真。模拟了不同的ADC分辨率。讨论了测量的条件和限制。该技术可用于生物学中小微物体的测量和鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-dimensional measurement of optical parameters using inverse source problem and phase-shifting technique: optical scheme modeling
The inverse source problem is solved by utilization of reverse Fourier transformation of the light, transmitted through the object. Phase-shifting technique for obtaining the information on the phase distribution during measurement is proposed. This allows calculation of the transmission coefficient and phase delay in every point of the object. The incorporation of a reference measurement eliminates the influence of the measurement system parameters. The theoretical background is shown. A computer simulation of the influence of the more important factors of the optical scheme on the accuracy is presented. Simulation is done for different positions of the basic optical elements and inexact phase shifting. Different ADC resolutions are simulated too. Conditions and limits of measurement are discussed. This technique could be used in measurement and qualification of small and micro objects in biology.
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