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Dual-wavelength interferometry based on the spatial carrier-frequency phase-shifting method

机译:基于空间载频相移法的双波长干涉法

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摘要

From a single-frame dual-wavelength spatial carrier-frequency interferogram (SCFI), we propose a novel phase retrieval method of dual-wavelength interferometry (DWI). First, by continuously moving the intercepted area pixel-by-pixel in a single-frame SCFI along the horizontal and vertical directions, we construct a sequence of phase-shifting sub-interferograms. Second, the wrapped phases of each single wavelength can be retrieved from those phase-shifting sub-interferograms via the least-squares iteration algorithm. Third, the phase of synthetic wavelength can be obtained by subtraction between the wrapped phases of single wavelengths. Both the numerical simulation and the experimental result demonstrate that the proposed method reveals greater accuracy and convenience. Furthermore, because only single-frame SCFI can perform the phase retrieval of DWI, the proposed method offers better ability in resisting external vibration and disturbance, which will greatly facilitate the application of DWI in the dynamic phase measurement. (C) 2016 Optical Society of America
机译:从单帧双波长空间载频干涉图(SCFI),我们提出了一种新的双波长干涉测量(DWI)的相位检索方法。首先,通过沿水平和垂直方向在单帧SCFI中逐像素连续移动截取区域,我们构造了一系列相移子干涉图。其次,可以通过最小二乘迭代算法从那些相移子干涉图中获取每个单个波长的包裹相位。第三,可以通过在单个波长的包裹相位之间相减来获得合成波长的相位。数值模拟和实验结果均表明该方法具有较高的准确性和便利性。此外,由于只有单帧SCFI才能进行DWI的相位恢复,因此该方法具有更好的抵抗外部振动和干扰的能力,这将大大促进DWI在动态相位测量中的应用。 (C)2016美国眼镜学会

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