DocumentCode
468895
Title
Estimation of Uncertainties in 3D Motion Analysis Data
Author
Kim, Sikyung ; Mazumder, Mohammad Mynuddin Gani ; Park, Se Jin
Author_Institution
Kongju Nat. Univ., Kongju
fYear
2007
fDate
21-23 Nov. 2007
Firstpage
1219
Lastpage
1224
Abstract
A complete understanding of motion is important for assisting clinicians and engineers in the prevention, diagnosis, and treatment of people with physical disorders. According to an ISO standard, three dimension (3D) motion measurements are always related to some errors and therefore always only obtained values. For 3D motion measurement systems, when applied to measuring human motion, motion data is sometimes reported with a standard error of measurement reflecting the uncertainty of the measurement caused by this skin movement artifact during motion as well as system error and marker noise. This lack of information seriously limits the ability to investigate motion analysis for the researchers. The purpose of this paper is to quantify the uncertainty caused by skin movement artifact as well as sensor noise and measurement error of the motion analysis system. We present a method for incorporating the uncertainty of the matching between a model of the calibration device (3D robot) and measurements, obtained with a motion analysis system (Optotrak Certus), in a Kalman filter.
Keywords
Kalman filters; biocontrol; measurement errors; measurement uncertainty; medical robotics; motion estimation; 3D motion analysis data; 3D motion measurement systems; ISO standard; Kalman filter; Optotrak Certus; measurement error; physical disorders; skin movement artifact; uncertainty estimation; Anthropometry; Humans; ISO standards; Measurement standards; Measurement uncertainty; Motion analysis; Motion estimation; Motion measurement; Noise measurement; Skin;
fLanguage
English
Publisher
ieee
Conference_Titel
Convergence Information Technology, 2007. International Conference on
Conference_Location
Gyeongju
Print_ISBN
0-7695-3038-9
Type
conf
DOI
10.1109/ICCIT.2007.329
Filename
4420423
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