DocumentCode
1278694
Title
General construction of time-domain filters for orientation data
Author
Lee, Jehee ; Shin, Sung Youg
Author_Institution
Robotics Inst., Carnegie Mellon Univ., Pittsburgh, PA, USA
Volume
8
Issue
2
fYear
2002
Firstpage
119
Lastpage
128
Abstract
Capturing live motion has gained considerable attention in computer animation as an important motion generation technique. Canned motion data are comprised of both position and orientation components. Although a great number of signal processing methods are available for manipulating position data, the majority of these methods cannot be generalized easily to orientation data due to the inherent nonlinearity of the orientation space. In this paper, we present a new scheme that enables us to apply a filter mask (or a convolution filter) to orientation data. The key idea is to transform the orientation data into their analogues in a vector space, to apply a filter mask on them, and then to transform the results back to the orientation space. This scheme gives time-domain filters for orientation data that are computationally efficient and satisfy such important properties as coordinate invariance, time invariance and symmetry. Experimental results indicate that our scheme is useful for various purposes, including smoothing and sharpening
Keywords
computer animation; convolution; image motion analysis; invariance; symmetry; time-domain analysis; time-varying filters; video signal processing; canned motion data; computational efficiency; computer animation; convolution filter; coordinate invariance; data transformation; filter mask; linear time-invariant filtering; live motion capture; motion generation technique; motion signal processing methods; nonlinear orientation space; orientation data; rotation; sharpening; smoothing; symmetry; time invariance; time-domain filters; unit quaternions; vector space; Filters; Time domain analysis;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/2945.998665
Filename
998665
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