Multi-step stereo matching algorithm based on image fragment and confidence propagation

Yingjiang Li, Yaping Deng, Yuzhong Zhong
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Abstract

This paper presents a multi-step stereo matching algorithm that can be applied to multiple scenes. To adapt to different application scenarios, the algorithm divides the stereo matching process into three steps: point, fragment, and plane. First, the texture points of an image are extracted and the stereo matching (point disparity) of these points is performed using the improved self-aware matching measure (SAMM) algorithm. Then, according to the edge information of the image, a smooth region is divided into different fragments in the horizontal direction. The disparity estimation of the smooth region (segment disparity) is obtained through the confidence propagation of disparity values of texture points in the fragments. Finally, based on the similarity of plane disparity, a disparity map is generated using the disparity refining algorithm (plane disparity), and a final high-precision disparity value is obtained. The experimental results show that the proposed algorithm has high operational efficiency and accurate disparity estimation. Moreover, the algorithm may be adapted for more application scenarios.
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基于图像片段和置信度传播的多步立体匹配算法
提出了一种适用于多场景的多步立体匹配算法。为了适应不同的应用场景,该算法将立体匹配过程分为三点:点、片段、平面。首先,提取图像的纹理点,利用改进的自感知匹配测度(SAMM)算法对这些点进行立体匹配(点视差);然后,根据图像的边缘信息,在水平方向上将光滑区域划分为不同的碎片。通过对碎片中纹理点的视差值进行置信度传播,得到光滑区域(片段视差)的视差估计。最后,基于平面视差的相似性,利用视差细化算法(平面视差)生成视差图,得到最终的高精度视差值。实验结果表明,该算法运算效率高,视差估计准确。此外,该算法可以适应更多的应用场景。
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