Shapiro V A, Kavardjikov V I, Atanassov S A
Appl Opt. 1993 Aug 10;32(23):4378-87. doi: 10.1364/AO.32.004378.
A new flexible automatic method for analysis of Young's fringes that allows software, electronic hardware, and optoelectronic realizations is proposed. A displacement vector is sought in the two-dimensional spatial frequency domain, the separate slices of which are obtained through multiple use of the one-dimensional Fourier transform of the Radon-transformed fringe image. An estimate of fringe angle and spacing is found from a projection with the principal Fourier spectrum peak. Afterward its position is repeatedly refined until the desired accuracy is reached. Although the method is relevant mainly to speckle photography, our approach is also applicable to fringe patterns that are generated by a computer. The problem of fringe visibility is widely discussed, and a new estimate is proposed.
提出了一种用于分析杨氏条纹的新型灵活自动方法,该方法可通过软件、电子硬件和光电方式实现。在二维空间频域中寻找位移矢量,其单独的切片通过对拉东变换后的条纹条纹图像图像多次进行一维傅里叶变换获得。根据主傅里叶频谱峰值的投影找到条纹角度和间距的估计值。之后反复细化其位置,直到达到所需精度。尽管该方法主要适用于散斑摄影,但我们的方法也适用于由计算机生成的条纹图案。文中广泛讨论了条纹可见度问题,并提出了一种新的估计方法。