Georgescu Bogdan, Meer Peter
Computer Science Department, Rutgers University, 94 Brett Road, Piscataway, NJ 08854-8058, USA.
IEEE Trans Pattern Anal Mach Intell. 2004 Jun;26(6):674-88. doi: 10.1109/TPAMI.2004.2.
To solve the general point correspondence problem in which the underlying transformation between image patches is represented by a homography, a solution based on extensive use of first order differential techniques is proposed. We integrate in a single robust M-estimation framework the traditional optical flow method and matching of local color distributions. These distributions are computed with spatially oriented kernels in the 5D joint spatial/color space. The estimation process is initiated at the third level of a Gaussian pyramid, uses only local information, and the illumination changes between the two images are also taken into account. Subpixel matching accuracy is achieved under large projective distortions significantly exceeding the performance of any of the two components alone. As an application, the correspondence algorithm is employed in oriented tracking of objects.
为了解决图像块之间的潜在变换由单应性表示的一般点对应问题,提出了一种基于广泛使用一阶微分技术的解决方案。我们将传统光流方法和局部颜色分布匹配集成到一个单一的鲁棒M估计框架中。这些分布是在5D联合空间/颜色空间中使用空间定向核计算的。估计过程在高斯金字塔的第三层开始,仅使用局部信息,并且还考虑了两幅图像之间的光照变化。在显著超过任何一个单独组件性能的大投影失真下实现了亚像素匹配精度。作为一种应用,对应算法被用于物体的定向跟踪。