Isometric Multi-Shape Matching
December 04, 2020 Β· Declared Dead Β· π Computer Vision and Pattern Recognition
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Authors
Maolin Gao, Zorah LΓ€hner, Johan Thunberg, Daniel Cremers, Florian Bernard
arXiv ID
2012.02689
Category
cs.CV: Computer Vision
Citations
34
Venue
Computer Vision and Pattern Recognition
Last Checked
4 months ago
Abstract
Finding correspondences between shapes is a fundamental problem in computer vision and graphics, which is relevant for many applications, including 3D reconstruction, object tracking, and style transfer. The vast majority of correspondence methods aim to find a solution between pairs of shapes, even if multiple instances of the same class are available. While isometries are often studied in shape correspondence problems, they have not been considered explicitly in the multi-matching setting. This paper closes this gap by proposing a novel optimisation formulation for isometric multi-shape matching. We present a suitable optimisation algorithm for solving our formulation and provide a convergence and complexity analysis. Our algorithm obtains multi-matchings that are by construction provably cycle-consistent. We demonstrate the superior performance of our method on various datasets and set the new state-of-the-art in isometric multi-shape matching.
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