Gaussian Splatting Lucas-Kanade
July 16, 2024 Β· Declared Dead Β· π International Conference on Learning Representations
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Authors
Liuyue Xie, Joel Julin, Koichiro Niinuma, Laszlo A. Jeni
arXiv ID
2407.11309
Category
cs.CV: Computer Vision
Cross-listed
cs.GR
Citations
1
Venue
International Conference on Learning Representations
Last Checked
5 months ago
Abstract
Gaussian Splatting and its dynamic extensions are effective for reconstructing 3D scenes from 2D images when there is significant camera movement to facilitate motion parallax and when scene objects remain relatively static. However, in many real-world scenarios, these conditions are not met. As a consequence, data-driven semantic and geometric priors have been favored as regularizers, despite their bias toward training data and their neglect of broader movement dynamics. Departing from this practice, we propose a novel analytical approach that adapts the classical Lucas-Kanade method to dynamic Gaussian splatting. By leveraging the intrinsic properties of the forward warp field network, we derive an analytical velocity field that, through time integration, facilitates accurate scene flow computation. This enables the precise enforcement of motion constraints on warp fields, thus constraining both 2D motion and 3D positions of the Gaussians. Our method excels in reconstructing highly dynamic scenes with minimal camera movement, as demonstrated through experiments on both synthetic and real-world scenes.
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