Intrinsic Characterization of Dynamic Surfaces

Tony Tung, T. Matsuyama
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引用次数: 6

Abstract

This paper presents a novel approach to characterize deformable surface using intrinsic property dynamics. 3D dynamic surfaces representing humans in motion can be obtained using multiple view stereo reconstruction methods or depth cameras. Nowadays these technologies have become capable to capture surface variations in real-time, and give details such as clothing wrinkles and deformations. Assuming repetitive patterns in the deformations, we propose to model complex surface variations using sets of linear dynamical systems (LDS) where observations across time are given by surface intrinsic properties such as local curvatures. We introduce an approach based on bags of dynamical systems, where each surface feature to be represented in the codebook is modeled by a set of LDS equipped with timing structure. Experiments are performed on datasets of real-world dynamical surfaces and show compelling results for description, classification and segmentation.
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动态曲面的内在表征
本文提出了一种利用内禀特性动力学表征可变形表面的新方法。代表运动中的人体的三维动态表面可以通过多视图立体重建方法或深度相机获得。如今,这些技术已经能够实时捕捉表面变化,并提供诸如衣服褶皱和变形等细节。假设变形中的重复模式,我们建议使用线性动力系统(LDS)集来模拟复杂的表面变化,其中随时间的观测由表面固有性质(如局部曲率)给出。我们介绍了一种基于动力系统包的方法,其中每个要在码本中表示的表面特征由一组具有时序结构的LDS来建模。在真实世界的动态表面数据集上进行了实验,并显示了令人信服的描述、分类和分割结果。
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