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Reliability-guided phase unwrapping in wavelet-transform profilometry

机译:小波变换轮廓分析中的可靠度引导相位展开

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摘要

The phase unwrapping algorithm plays a very important role in many noncontact optical profilometries based on triangular measurement theory. Here we focus on discussing how to diminish the phase error caused by incorrect unwrapping path in wavelet transform profilometry. We employ the amplitude value map of wavelet transform coefficients at the wavelet-ridge position to identify the reliability of the phase data and the path of phase unwrapping. This means that the wrapped phase located at the pixel with the highest amplitude value will be selected as the starting point of the phase unwrapping, and that pixels with higher amplitude value will be unwrapped earlier. So the path of phase unwrapping is always in the direction of the pixel with highest amplitude value to the one with lowest amplitude value. Making full use of the amplitude information of wavelet coefficients at the wavelet-ridge position keeps the phase unwrapping error limited to local minimum areas even in the worst case. Computer simulations and experiments verify our theory.
机译:基于三角测量理论,相位解缠算法在许多非接触式光学轮廓测量中起着非常重要的作用。在这里,我们着重讨论如何减少由于小波变换轮廓测量中错误的展开路径而引起的相位误差。我们在小波脊位置采用小波变换系数的幅值图来确定相位数据的可靠性和相位展开的路径。这意味着将选择振幅值最大的像素处的包裹相位作为相位展开的起点,而振幅值较高的像素将更早地展开。因此,相位展开的路径始终沿振幅值最高的像素到振幅值最低的像素的方向。充分利用小波脊位置处的小波系数的幅度信息,即使在最坏的情况下,也可以将相位展开误差限制在局部最小区域。计算机仿真和实验验证了我们的理论。

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