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Development of a phase-displacement equation for panoramic interferometry

机译:全景干涉仪相位移方程的开发

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We developed the parametric equations that are needed to quantify the modulations in the sensitivity vector that occur when the phase-displacement equation is applied to make panoramic interferometric measurements. The measurement system relies on two collinear panoramic annular lenses, one to illuminate and the other to image their surroundings. When a coherent light source is used and a reference beam is added, interference occurs over the region of interest defined by the illuminating and viewing lenses. A holographic system is used to demonstrate the approach and quantify the analysis. We obtained interference fringes in real time by comparing holograms recorded before and after a section of cylindrical pipe is displaced relative to the measurement system. The annular images and the holographic fringes are acquired and stored digitally in a computer system, and image transformation algorithms are applied to remove optical distortions in the holographic patterns. Excellent agreement is obtained when the fringe loci are compared with those predicted on the basis of theory.
机译:我们开发了用于量化灵敏度矢量中的调制所需要的参数方程式,当相位移方程式用于进行全景干涉测量时,调制度会发生。该测量系统依赖于两个共线全景环形透镜,一个用于照明,另一个用于对周围环境成像。当使用相干光源并添加参考光束时,在照明透镜和观察透镜定义的感兴趣区域上会发生干涉。全息系统用于演示该方法和量化分析。通过比较一段圆柱管相对于测量系统位移前后记录的全息图,我们实时获得了干涉条纹。采集环形图像和全息条纹并将其数字存储在计算机系统中,并应用图像变换算法来消除全息图案中的光学畸变。将边缘基因座与根据理论预测的边缘基因座进行比较,可获得极好的一致性。

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