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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >A method for enforcing integrability in shape from shading algorithms
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A method for enforcing integrability in shape from shading algorithms

机译:一种基于阴影算法的形状可集成性增强方法

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摘要

An approach for enforcing integrability, a particular implementation of the approach, an example of its application to extending an existing shape-from-shading algorithm, and experimental results showing the improvement that results from enforcing integrability are presented. A possibly nonintegrable estimate of surface slopes is represented by a finite set of basis functions, and integrability is enforced by calculating the orthogonal projection onto a vector subspace spanning the set of integrable slopes. The integrability projection constraint was applied to extending an iterative shape-from-shading algorithm of M.J. Brooks and B.K.P. Horn (1985). Experimental results show that the extended algorithm converges faster and with less error than the original version. Good surface reconstructions were obtained with and without known boundary conditions and for fairly complicated surfaces.
机译:提出了一种用于执行可集成性的方法,该方法的一种特定实现,在扩展现有的“从阴影生成形状”算法中的应用示例以及实验结果,这些结果表明了执行可集成性所带来的改进。有限的基函数集表示表面坡度的一种可能的不可积分估计,并且通过计算到跨越该组可积分斜率的向量子空间上的正交投影来增强可积分性。将可积投影约束应用于扩展M.J. Brooks和B.K.P.霍恩(1985)。实验结果表明,扩展算法收敛速度快,误差小。在有和没有已知边界条件的情况下,对于相当复杂的表面,都可以获得良好的表面重构。

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