Abstract
A sequence of 3D models generated using volumetric capture has the advantage of retaining the characteristics of dynamic objects and scenes. However, in volumetric data, since 3D mesh and texture are synthesized for every frame, the mesh of every frame has a different shape, and the brightness and color quality of the texture is various. This paper proposes an algorithm to consistently create a mesh of 4D volumetric data using dynamic reconstruction. The proposed algorithm comprises remeshing, correspondence searching, and target frame reconstruction by key frame deformation. We make non-rigid deformation possible by applying the surface deformation method of the key frame. Finally, we propose a method of compressing the target frame using the target frame reconstructed using the key frame with error rates of up to 98.88% and at least 20.39% compared to previous studies. The experimental results show the proposed method’s effectiveness by measuring the geometric error between the deformed key frame and the target frame. Further, by calculating the residual between two frames, the ratio of data transmitted is measured to show a compression performance of 18.48%.
Funder
the MSIT (Ministry of Science and ICT), Korea
the IITP
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference41 articles.
1. ORB-SLAM: A Versatile and Accurate Monocular SLAM System;IEEE Trans. Robot.,2015
2. Engel, J., Schöps, T., and Cremers, D. (2014). European Conference on Computer Vision, Springer.
3. Karami, A., Menna, F., and Remondino, F. (2022). Combining Photogrammetry and Photometric Stereo to Achieve Precise and Complete 3D Reconstruction. Sensors, 22.
4. Balde, A.Y., Bergeret, E., Cajal, D., and Toumazet, J.P. (2022). Low Power Environmental Image Sensors for Remote Photogrammetry. Sensors, 22.
5. Łabędź, P., Skabek, K., Ozimek, P., Rola, D., Ozimek, A., and Ostrowska, K. (2022). Accuracy Verification of Surface Models of Architectural Objects from the iPad LiDAR in the Context of Photogrammetry Methods. Sensors, 22.