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Design of phase-shifting algorithms by fine-tuning spectral shaping

机译:通过微调频谱整形设计相移算法

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摘要

To estimate the modulating wavefront of an interferogram in Phase Shifting Interferometry (PSI) one frequently uses a Phase Shifting Algorithm (PSA). All PSAs take as input N phase-shifted interferometric measures, and give an estimation of their modulating phase. The first and best known PSA designed explicitly to reduce a systematic error source (detuning) was the 5-steps, Schwider-Hariharan (SH-PSA) PSA. Since then, dozens of PSAs have been published, designed to reduce specific data error sources on the demodulated phase. In Electrical Engineering the Frequency Transfer Function (FTF) of their linear filters is their standard design tool. Recently the FTF is also being used to design PSAs. In this paper we propose a technique for designing PSAs by fine-tuning the few spectral zeroes of a PSA to approximate a template FTF spectrum. The PSA's spectral zeroes are moved (tuned) while gauging the plot changes on the resulting FTF's magnitude.
机译:为了在相移干涉术(PSI)中估计干涉图的调制波前,人们经常使用相移算法(PSA)。所有PSA都将N个相移干涉测量作为输入,并估计其调制相位。显着减少系统错误源(失谐)的第一个也是最广为人知的PSA,是五个步骤的Schwider-Hariharan(SH-PSA)PSA。从那时起,已经发布了数十个PSA,旨在减少解调阶段的特定数据错误源。在电气工程中,其线性滤波器的频率传递函数(FTF)是其标准设计工具。最近,FTF也被用于设计PSA。在本文中,我们提出了一种通过微调PSA的几个频谱零来近似模板FTF频谱的PSA设计技术。 PSA的频谱零点被移动(调整),同时测量绘制的FTF幅值的变化。

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