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Multiscale stereo analysis based on local-color-phase congruency in the color monogenic signal framework

机译:颜色单基因信号框架中基于局部色相一致性的多尺度立体分析

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摘要

A multiscale method based on local-color-phase congruency in the color monogenic signal framework is proposed to match feature points and estimate disparity maps for stereo images. As the monogenic signal is the extension of the analytic signal to gray-level images using the Dirac operator and the Laplace equation, the scale-space color monogenic signal is the extension of the monogenic signal to color images based on Clifford algebras. The local color phase, which is estimated by computing the geometric product between the color monogenic signal and a unit reference vector in red-green-blue color space, contains the color and geometric structure information and is robust against noise and brightness change. Experimental results on synthetic and natural stereo images show the performance of the proposed approach.
机译:提出了一种在彩色单基因信号框架中基于局部色相一致性的多尺度方法来匹配特征点并估计立体图像的视差图。由于单基因信号是使用Dirac算子和Laplace方程将分析信号扩展为灰度图像的原因,因此比例空间颜色单基因信号是将单基因信号扩展为基于Clifford代数的彩色图像的方法。通过计算颜色单基因信号和红,绿,蓝颜色空间中的单位参考矢量之间的几何乘积来估计局部色相,该色相包含颜色和几何结构信息,并且对噪声和亮度变化具有鲁棒性。在合成和自然立体图像上的实验结果表明了该方法的性能。

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