The Visual Simulation Analysis of Human Body Movement Model

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Abstract:

This paper proposes the re-built human body movement model with multiple cameras. In the tracking frame of the non-linear optimization strategy, the paper builds the body dynamic model to dynamically simulate the human movement which effectively solves the issues of the body parts overlap and tracking errors accumulate. Compared with traditional methods, the required equipment is very economic and the matching accuracy of the algorithm is quite high. The paper applies the athletes as the experimental examples which illustrate the proposed algorithm can effectively increase the 3D image tracking matching accuracy in dynamic videos as the analysis basis.

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3913-3916

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May 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zetao Jiang, Xi Tong, Tongmin Liu, Binocular Camera Self Calibration Method based on the Affine Projection Model, JCIT, Vol. 8, No. 9, p.946 ~ 952, (2013).

DOI: 10.4156/jcit.vol8.issue9.116

Google Scholar

[2] Yao Qingyuan, Pu Jiexin, Liu Zhonghua, Concentric Circles Calibration Method of Linear CCD Camera, JDCTA, Vol. 7, No. 4, p.643 ~ 651, (2013).

DOI: 10.4156/jdcta.vol7.issue4.77

Google Scholar

[3] Ge Zhang, Pei-de Liu, The Competency Evaluation Method of Human Resources Manager Based on Linguistic Variables Grey Relation Projection Model, AISS, Vol. 3, No. 4, p.10 ~ 20, (2011).

DOI: 10.4156/aiss.vol3.issue4.2

Google Scholar

[4] ZHANG Jianzhong, HE Yongyi, LI Jun, Research on Positioning Compensation in the Pick-and-Place System, JCIT, Vol. 8, No. 10, pp. ~ , (2008).

Google Scholar

[5] Hongbo XIA, Study on the Video Image Tracking Technology based on the Particle Filter algorithm, JCIT, Vol. 7, No. 11, p.384 ~ 391, (2012).

DOI: 10.4156/jcit.vol7.issue11.48

Google Scholar