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Fast and robust automatic calibration for single-shot dual-wavelength digital holography based on speckle displacements

机译:基于散斑位移的单次双波长数字全息快速,强大的自动校准

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摘要

The objective of this paper is to describe a fast and robust automatic single-shot dual-wavelength holographic calibration method that can be used for online shape measurement applications. We present a model of the correction in two terms for each lobe, one to compensate the systematic errors caused by off-axis angles and the other for the curvature of the reference waves, respectively. Each hologram is calibrated independently without a need for an iterative procedure or information of the experimental set-up. The calibration parameters are extracted directly from speckle displacements between different reconstruction planes. The parameters can be defined as any fraction of a pixel to avoid the effect of quantization. Using the speckle displacements, problems associated with phase wrapping is avoided. The procedure is shown to give a shape accuracy of 34 mu m using a synthetic wavelength of 1.1 mm for a measurement on a cylindrical test object with a trace over a field of view of 18 mm x 18 mm. (C) 2015 Optical Society of America
机译:本文的目的是描述一种可用于在线形状测量应用的快速而强大的自动单次双波长全息校准方法。我们为每个波瓣提供了两种校正模型,一种用于补偿由偏轴角引起的系统误差,另一种用于补偿参考波的曲率。每个全息图都是独立校准的,不需要迭代过程或实验装置的信息。可以从不同重建平面之间的斑点位移直接提取校准参数。可以将参数定义为像素的任何分数,以避免量化的影响。使用斑点位移,避免了与相位包裹相关的问题。所显示的程序使用1.1毫米的合成波长可在34毫米的形状精度上进行测量,以在圆柱形测试对象上进行测量,并在18毫米x 18毫米的视场上留下痕迹。 (C)2015年美国眼镜学会

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