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Fast Reference Phase Extraction and Wave-front Reconstruction for Generalized Phase-shifting Interferometry

机译:广义相移干涉法的快速参考相位提取和波前重建

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An important approach of complex wave reconstruction in generalized phase-shifting interferometry (GPSI) with arbitrary unknown phase shifts is the combination of two (a conventional and an inverse) least square methods (LSMs), where the conventional LSM requires the calculation of solving a set of least square equations for each pixel in each iteration, giving rise to a heavy computation burden. Here a much-simplified algorithm is suggested to extract reference phase and then reconstruct object wave-front by replacing the conventional LSM in above process with our specially derived wave reconstruction formulae for GPSI. In this method, only one least-square equation is needed in each iteration to retrieve the reference phase, and the object phase can be calculated analytically and simultaneously. The feasibility and effectiveness of this algorithm have been verified by computer simulations with both the smooth and diffusing objects. The results show that this innovation can save computing time by about 20 times compared with previous two-LSM algorithm while still ensures its high precision. This approach can be used for GPSI with three or more frames in the wide range of unknown positive or negative phase shifts. Optical experiments have also made with satisfactory results.
机译:具有任意未知相移的广义相移干扰测定法(GPSI)中复杂波重建的重要方法是两种(传统和逆)最小二乘法(LSM)的组合,其中传统的LSM需要计算求解A.每次迭代中每个像素的最小方形方程设置,从而产生沉重的计算负担。这里建议一种简化简化的算法来提取参考阶段,然后通过针对GPSI的专门导出的波重建公式替换上述过程中的传统LSM来重建对象波前。在该方法中,在每次迭代中仅需要一个最小方形方程以检索参考阶段,并且可以分析和同时计算对象阶段。该算法的可行性和有效性通过平滑和扩散对象的计算机仿真验证了该算法。结果表明,与先前的双LSM算法相比,这一创新可以节省约20次的计算时间,同时仍然可以确保其高精度。这种方法可用于GPSI,在宽范围内的未知正或负相移的范围内具有三个或更多帧。光学实验也具有令人满意的结果。

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