Wu Sijin, Zhu Lianqing, Pan Siyang, Yang Lianxiang
Opt Lett. 2016 Mar 1;41(5):1050-3. doi: 10.1364/OL.41.001050.
We propose a hybrid spatiotemporal three-dimensional phase unwrapping algorithm for use in digital speckle pattern interferometry (DSPI). The feature of the proposed algorithm is the integration of one-dimensional temporal and two-dimensional spatial phase unwrapping algorithms. By demodulating the phase on a single reference point or multiple reference points using temporal phase unwrapping and on each separated phase map region using spatial phase unwrapping, the DSPI with the spatiotemporal three-dimensional phase unwrapping algorithm can realize the measurement of dynamic absolute displacements and the determination of abrupt phase changes which are usually caused by object discontinuities. We demonstrate that the presented algorithm can overcome the drawbacks of the traditional spatial and temporal phase unwrapping algorithms.
我们提出了一种用于数字散斑图案干涉测量法(DSPI)的混合时空三维相位展开算法。该算法的特点是将一维时间相位展开算法和二维空间相位展开算法相结合。通过使用时间相位展开在单个参考点或多个参考点上解调相位,并使用空间相位展开在每个分离的相位图区域上解调相位,采用时空三维相位展开算法的DSPI能够实现动态绝对位移的测量以及通常由物体不连续引起的突变相位变化的确定。我们证明了所提出的算法可以克服传统空间和时间相位展开算法的缺点。