Title :
Efficient Squared Curvature
Author :
Nieuwenhuis, Claudia ; Toeppe, Eno ; Gorelick, Lena ; Veksler, Olga ; Boykov, Yuri
Author_Institution :
UC Berkeley, Berkeley, CA, USA
Abstract :
Curvature has received increasing attention as an important alternative to length based regularization in computer vision. In contrast to length, it preserves elongated structures and fine details. Existing approaches are either inefficient, or have low angular resolution and yield results with strong block artifacts. We derive a new model for computing squared curvature based on integral geometry. The model counts responses of straight line triple cliques. The corresponding energy decomposes into submodular and supermodular pairwise potentials. We show that this energy can be efficiently minimized even for high angular resolutions using the trust region framework. Our results confirm that we obtain accurate and visually pleasing solutions without strong artifacts at reasonable runtimes.
Keywords :
computational geometry; computer vision; image resolution; minimisation; angular resolution; computer vision; energy decomposition; energy minimization; integral geometry; length based regularization; squared curvature; trust region framework; visually pleasing solution; Accuracy; Approximation methods; Computational modeling; Energy resolution; Geometry; Image segmentation; Runtime; MRF; curvature; discrete; efficient; fast trust region; inpainting; optimization; regularization; segmentation; triple cliques;
Conference_Titel :
Computer Vision and Pattern Recognition (CVPR), 2014 IEEE Conference on
Conference_Location :
Columbus, OH
DOI :
10.1109/CVPR.2014.522