Monocular Template-Based 3D Reconstruction of Extensible Surfaces with Local Linear Elasticity

Abed C. Malti, R. Hartley, A. Bartoli, Jae-Hak Kim
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引用次数: 63

Abstract

We propose a new approach for template-based extensible surface reconstruction from a single view. We extend the method of isometric surface reconstruction and more recent work on conformal surface reconstruction. Our approach relies on the minimization of a proposed stretching energy formalized with respect to the Poisson ratio parameter of the surface. We derive a patch-based formulation of this stretching energy by assuming local linear elasticity. This formulation unifies geometrical and mechanical constraints in a single energy term. We prevent local scale ambiguities by imposing a set of fixed boundary 3D points. We experimentally prove the sufficiency of this set of boundary points and demonstrate the effectiveness of our approach on different developable and non-developable surfaces with a wide range of extensibility.
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基于单目模板的局部线弹性可扩展曲面三维重建
提出了一种基于模板的单视图可扩展曲面重建方法。我们扩展了等距曲面重建方法和最近的保形曲面重建工作。我们的方法依赖于关于表面泊松比参数形式化的拟议拉伸能量的最小化。我们通过假设局部线性弹性,推导出基于补丁的拉伸能量公式。这个公式将几何约束和力学约束统一在一个能量项中。我们通过施加一组固定的边界3D点来防止局部尺度模糊。实验证明了该边界点集的充分性,并证明了该方法在具有广泛可扩展性的可展曲面和不可展曲面上的有效性。
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