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Non-rigid surface recovery with a robust local-rigidity prior

机译:具有非凡的本地刚性的非刚性表面恢复

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摘要

It is generally much harder to reconstruct the 3D structures of a non-rigid object than that of a rigid object, because of the increased degrees of freedom. To overcome the ill-posed nature of this problem, there have been many researches that incorporate prior assumptions on the object. An attractive approach is to assume the local parts to be rigid, because there might be a possibility to reduce some degrees of freedom that have to be estimated. Unfortunately, this assumption is not strictly true for general objects, and rigid and non-rigid parts are usually mixed in an object. This issue may be circumvented if we can utilize a robust local-rigidity prior to enforce rigidity on local parts selectively. In this paper, we provide a simple cost function that imposes a rigidity prior on each local triangular patch, and the proposed algorithm minimizes this cost to reconstruct a non-rigid surface. Non-rigid local parts are handled as outliers in the proposed algorithm, which makes the algorithm capable of reconstructing a near-locally-rigid surface that might contain a few non-negligible deformations. Experimental results show that the proposed method provides the state-of-the-art performance for well-known dense surface data sets. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于增加的自由度,通常要比刚性对象的3D结构难得多。为了克服该问题的不适定性,已经有许多研究结合了对该对象的先前假设。一种有吸引力的方法是假定局部零件是刚性的,因为可能会降低某些必须估计的自由度。不幸的是,这种假设对于一般对象并不是严格正确的,并且刚性和非刚性零件通常混合在一个对象中。如果我们可以在选择地对局部零件施加刚性之前利用稳健的局部刚度,则可以避免此问题。在本文中,我们提供了一个简单的成本函数,该函数在每个局部三角形面片上都施加了先验的刚度,并且所提出的算法使重建非刚性表面的成本最小化。在提出的算法中,非刚性局部零件被作为离群值处理,这使得该算法能够重建可能包含一些不可忽略的变形的近局部刚性表面。实验结果表明,该方法为众所周知的密集表面数据集提供了最新的性能。 (C)2018 Elsevier B.V.保留所有权利。

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