Kaufmann Guillermo H, Galizzi Gustavo E
Instituto de Física Rosario, Bvd. 27 de Febrero 210 bis, Rosario S2000EZP, Argentina.
Appl Opt. 2002 Dec 1;41(34):7254-63. doi: 10.1364/ao.41.007254.
The measurement of dynamic displacements by use of speckle pattern interferometry and temporal phase unwrapping allows for the evaluation of large-object displacement fields without the propagation of spatial unwrapping errors. If a temporal carrier is introduced in one of the beams of the interferometer, phase data for whole-object displacement can be retrieved by use of a temporal phase-shifting method or a temporal Fourier transformation approach. We present a comparison between both methods of temporal phase measurement in terms of precision and execution speed. We performed the analysis by using computer-simulated speckle interferograms, an approach that allowed us to know precisely the original phase distribution and also to determine the spatial rms phase error as a function of the phase change introduced between two consecutive speckle interferograms. The performance of both methods to process experimental data is also illustrated by use of the results from a high-speed speckle interferometry study of a carbon fiber panel.
利用散斑图案干涉测量法和时间相位展开来测量动态位移,能够在不传播空间展开误差的情况下评估大物体的位移场。如果在干涉仪的其中一束光束中引入时间载波,那么通过使用时间相移法或时间傅里叶变换方法,就可以获取整个物体位移的相位数据。我们从精度和执行速度方面对两种时间相位测量方法进行了比较。我们通过使用计算机模拟散斑干涉图来进行分析,这种方法使我们能够精确地知道原始相位分布,并且还能确定作为两个连续散斑干涉图之间引入的相位变化函数的空间均方根相位误差。通过对碳纤维面板进行高速散斑干涉测量研究的结果,也说明了这两种方法处理实验数据的性能。