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Fast and Robust Motion Tracking for Time-Varying Mesh Featuring Reeb-Graph-Based Skeleton Fitting and its Application to Motion Retrieval

机译:基于基于锐步图的骨架拟合的时变网格的快速鲁棒运动跟踪及其在运动检索中的应用

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In this paper, an algorithm for motion extraction from Time-Varying Mesh (TVM) is proposed. TVM is a sequence of 3D models made for real-world dynamic objects. In TVM, detailed information of 3D objects such as shape, color, and motion is stored. Therefore, TVM is an attractive technology for the next-generation multimedia. However, the management of TVM database for archiving and retrieving is a significant problem because it is difficult to locate and track feature points in TVM. For efficient and effective archive and retrieval systems, motion extraction and tracking is essential. In our approach, skeletons are extracted from TVM using Reeb graph, and motion tracking is achieved by fitting a reference skeleton to the others. We defined a geodesic function using principal component analysis (PCA) for fast and noiseless skeleton extraction. Robust fitting has been realized by an end node tracking strategy. In addition, we have developed an efficient motion retrieval system compatible to conventional motion capture (mocap) data using the extracted skeleton. As a result, low-cost query generation using mocap systems and cross search between TVM and mocap data have been achieved.
机译:提出了一种时变网格(TVM)运动提取算法。 TVM是为实际动态对象制作的一系列3D模型。在TVM中,存储3D对象的详细信息,例如形状,颜色和运动。因此,TVM是下一代多媒体的诱人技术。但是,用于TVM存档和检索的TVM数据库管理是一个重大问题,因为很难在TVM中定位和跟踪特征点。对于高效有效的存档和检索系统,运动提取和跟踪至关重要。在我们的方法中,使用Reeb图从TVM中提取骨骼,并通过将参考骨骼拟合到其他骨骼来实现运动跟踪。我们使用主成分分析(PCA)定义了测地线函数,以快速,无噪音地提取骨骼。结点跟踪策略已实现了稳健的拟合。此外,我们已经开发了一种有效的运动检索系统,该系统与使用提取的骨骼的常规运动捕获(mocap)数据兼容。结果,已经实现了使用mocap系统的低成本查询生成以及TVM和mocap数据之间的交叉搜索。

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