Rajshekhar Gannavarpu, Gorthi Sai Siva, Rastogi Pramod
Applied Computing and Mechanics Laboratory, Ecole Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
Appl Opt. 2011 Dec 1;50(34):H16-21. doi: 10.1364/AO.50.000H16.
The paper introduces a method for simultaneously measuring the in-plane and out-of-plane displacement derivatives of a deformed object in digital holographic interferometry. In the proposed method, lasers of different wavelengths are used to simultaneously illuminate the object along various directions such that a unique wavelength is used for a given direction. The holograms formed by multiple reference-object beam pairs of different wavelengths are recorded by a 3-color CCD camera with red, green, and blue channels. Each channel stores the hologram related to the corresponding wavelength and hence for the specific direction. The complex reconstructed interference field is obtained for each wavelength by numerical reconstruction and digital processing of the recorded holograms before and after deformation. Subsequently, the phase derivative is estimated for a given wavelength using two-dimensional pseudo Wigner-Ville distribution and the in-plane and out-of-plane components are obtained from the estimated phase derivatives using the sensitivity vectors of the optical configuration.
本文介绍了一种在数字全息干涉测量中同时测量变形物体面内和面外位移导数的方法。在所提出的方法中,使用不同波长的激光沿不同方向同时照射物体,使得给定方向使用唯一的波长。由不同波长的多个参考物光束对形成的全息图由具有红、绿、蓝通道的三色CCD相机记录。每个通道存储与相应波长相关的全息图,因此也存储与特定方向相关的全息图。通过对记录的变形前后全息图进行数值重建和数字处理,为每个波长获得复重建干涉场。随后,使用二维伪维格纳-威利分布估计给定波长的相位导数,并使用光学配置的灵敏度矢量从估计的相位导数中获得面内和面外分量。