Tang Chen, Zhang Fang, Chen Zhanqing
Department of Applied Physics, University of Tianjin, China.
Appl Opt. 2006 Apr 1;45(10):2287-94. doi: 10.1364/ao.45.002287.
Electronic speckle pattern interferometry fringe patterns usually have poor contrast so it is important to enhance fringe contrast for the extraction of phase from a single fringe pattern. We present new enhancement methods based on differential equations (called DE enhancement methods) to electronic speckle pattern interferometry fringes. The DE enhancement methods transform the image processing to solve differential equations. With the proposed methods, the visibility of the correlation speckle fringe patterns can be improved significantly. We tested the proposed methods on computer-simulated speckle correlation fringes and experimentally obtained fringes, and we compared the new method with other contrast enhancement techniques. The experimental results illustrate the performance of this approach.
电子散斑干涉条纹图案通常对比度较差,因此为了从单个条纹图案中提取相位,提高条纹对比度很重要。我们提出了基于微分方程的新增强方法(称为DE增强方法)用于电子散斑干涉条纹。DE增强方法将图像处理转化为求解微分方程。使用所提出的方法,相关散斑条纹图案的可见度可以显著提高。我们在计算机模拟的散斑相关条纹和实验获得的条纹上测试了所提出的方法,并将新方法与其他对比度增强技术进行了比较。实验结果说明了这种方法的性能。