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Graphical Models
Volume 63, Issue 2, March 2001, Pages 87-105
 
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doi:10.1006/gmod.2001.0548    How to Cite or Link Using DOI (Opens New Window)
Copyright © 2001 Academic Press. All rights reserved.

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A Coordinate-Invariant Approach to Multiresolution Motion Analysis

Jehee Leea and Sung Yong Shinb

a Robotics Institute, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, Pennsylvania, 15213 b Department of Electric Engineering and Computer Science, Korea Advanced Institute of Science and Technology, 373-1 Kungsong-dong Yusong-gu, Taejon, 305-701, Korea

Received 14 February 2001; 
accepted 1 June 2001. ;
Available online 4 March 2002.

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Abstract

Multiresolution motion analysis has gained considerable research interest as a unified framework to facilitate a variety of motion editing tasks. Within this framework, motion data are represented as a collection of coefficients that form a coarse-to-fine hierarchy. The coefficients at the coarsest level describe the global pattern of a motion signal, while those at fine levels provide details at successively finer resolutions. Due to the inherent nonlinearity of the orientation space, the challenge is to generalize multiresolution representations for motion data that contain orientations as well as positions. Our goal is to develop a multiresolution analysis method that guarantees coordinate-invariance without singularity. To do so, we employ two novel ideas: hierarchical displacement mapping and motion filtering. Hierarchical displacement mapping provides an elegant formulation to describe positions and orientations in a coherent manner. Motion filtering enables us to separate motion details level-by-level to build a multiresolution representation in a coordinate-invariant way. Our representation facilitates multiresolution motion editing through level-wise coefficient manipulation that uniformly addresses issues raised by motion modification, blending, and stitching.

Abbreviations: multiresolution analysisAbbreviations: coordinate-invarianceAbbreviations: hierarchical techniquesAbbreviations: motion editingAbbreviations: motion signal processing


Graphical Models
Volume 63, Issue 2, March 2001, Pages 87-105
 
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