3D Visual Motion Amplitude Tracking Simulation Method for Sports
-
Published:2021-12-10
Issue:7
Volume:14
Page:718-726
-
ISSN:2352-0965
-
Container-title:Recent Advances in Electrical & Electronic Engineering (Formerly Recent Patents on Electrical & Electronic Engineering)
-
language:en
-
Short-container-title:EEENG
Affiliation:
1. GuangXi Technological College of Machinery and Electricity, Guang Xi Province, Nanning City, 530007, China
2. Department of Computer Science, Faculty of Technology, Debre Tabor University, Debre Tabor, Ethiopia
Abstract
Background:
The character motion of 3D animation production is difficult, and to solve
this problem, motion-pose capture technology is very effective. The workload of character motion
control is reduced by this technique and the animation development is improved. It is used in virtual
training grounds and real-time tracking of the motion. The complete contour features cannot be efficiently
acquired by the 3D visual motion technique. The 3D visual motion amplitude tracking method
in sports is studied in order to improve the training quality of athletes effectively. However,
when the current method is used for motion amplitude tracking, the markers in the adjacent monocular
sequence motion amplitude images cannot be calculated.
Methodology:
At this point, there is a problem of a large tracking error of 3D visual motion amplitude.
To this end, a 3D amplitude tracking method in sports based on inverse kinematics is proposed.
This method locates the marker points that appear in the adjacent monocular sequence motion
range and merges it with the rotation angle method to predict the position of the motion range
in the image.
Results:
The motion amplitude is obtained, and 3D visual motion amplitude is outside the optimization
area; this has been used as a basis to complete the tracking of the 3D visual motion amplitude in sports.
Conclusion:
Experimental simulation performed in MATLAB proves the high tracking accuracy of
the proposed method.
Funder
key research project of Guangxi Vocational Education Teaching Reform
Guangxi University Young Teachers & apos; scientific research ability enhancement project,
Publisher
Bentham Science Publishers Ltd.
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献