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Hybrid algorithm for phase retrieval from a single spatial carrier fringe pattern

机译:从单个空间载波条纹图案进行相位检索的混合算法

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摘要

A hybrid algorithm is proposed in this study for demodulating a single spatial carrier fringe pattern (FP) of interferometric measurement, which essentially combines the spatial carrier phase shift (SCPS) method and Fourier transform (FT) method. It firstly extracts three phase-shifted FPs from a single spatial carrier FP, then employs the FT method and a subtraction operation to determine the phase shift of three phase-shifted FPs, and finally retrieves the phase map using a least-square phase shift algorithm. The subtraction operation could considerably mitigate the inherent edge error of the FT method, resulting in an increase of accuracy compared with the FT method. It also does not require the background and modulation amplitude of the spatial carrier FP to be constant; thus it is robust and quite suitable for engineering. The factors that may influence the performance of the proposed algorithm are analyzed, including the random and speckle noise, carrier frequency, shape of the background, and modulation amplitude. The feasibility of the proposed algorithm is validated by two experiments, comparing them with the temporal phase-shifted method. The proposed algorithm is expected to be used in interferometric measurement under adverse environments. (C) 2016 Optical Society of America
机译:本研究提出了一种混合算法,用于解调干涉测量的单个空间载波条纹图案(FP),该算法实质上结合了空间载波相移(SCPS)方法和傅立叶变换(FT)方法。它首先从单个空间载波FP中提取三个相移FP,然后使用FT方法和减法运算确定三个相移FP的相移,最后使用最小二乘相移算法检索相图。 。减法运算可以大大减轻FT方法固有的边缘误差,与FT方法相比,可以提高准确性。也不需要空间载波FP的背景和调制幅度恒定。因此,它很健壮,非常适合工程学。分析了可能影响所提出算法性能的因素,包括随机噪声和斑点噪声,载波频率,背景形状和调制幅度。通过两个实验验证了该算法的可行性,并将其与时间相移方法进行了比较。预期所提出的算法将用于不利环境下的干涉测量。 (C)2016美国眼镜学会

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