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3D shape reconstruction with a multiple-constraint estimation approach
DOI:10.3389/fnins.2023.1191574.png)
摘要
En 中文
In this study, a multiple-constraint estimation algorithm is presented to estimate the 3D shape of a 2D image sequence. Given the training data, a sparse representation model with an elastic net, i.e., l(1)-norm and l(2)-norm constraints, is devised to extract the shape bases. In the sparse model, the l(1)-norm and l(2)-norm constraints are enforced to regulate the sparsity and scale of coefficients, respectively. After obtaining the shape bases, a penalized least-square model is formulated to estimate 3D shape and motion, by considering the orthogonal constraint of the transformation matrix, and the similarity constraint between the 2D observations and the shape bases. Moreover, an Augmented Lagrange Multipliers (ALM) iterative algorithm is adopted to solve the optimization of the proposed approach. Experimental results on the well-known CMU image sequences demonstrate the effectiveness and feasibility of the proposed model.
Keyword:
non-rigid structure from motion
elastic net
similarity constraint
Augmented Lagrange multipliers
3D reconstruction
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期刊
IF:
3.2
论文数:
1.6W
被引数:
5.3W

