Title :
Morphology of broken vehicle windshield glass based on image processing
Author :
Zhang, Jie ; Sun, Chuanjiao ; Gao, Jiangang
Author_Institution :
Traffic Eng. Dept., Res. Inst. of Highway, Beijing, China
Abstract :
For the sake of researching the relationship between the velocity and quality of the steel ball and the morphology of broken vehicle windshield glass, a relationship model between the velocity and quality of the steel ball and the morphology of broken glass was established by image processing technology. Three different types of steel ball, in five different velocities are selected to simulate the collision process. The results show that, the concentration area of broken vehicle windshield glass is decided by the velocity and quality of the steel ball: the heavier the steel ball, the faster the velocity, then the larger the area; the morphology of broken vehicle is related to the velocity and quality of the steel ball: with the rise of the velocity and quality, the morphology from no trace, radial trace, sparse arc trace and radial trace to intensive arc trace and radial trace. Good idea is given to reconstruct the speed and quality of the collision objective based on the morphology of broken glass.
Keywords :
automotive components; crystal morphology; glass; image processing; mechanical engineering computing; optical windows; quality control; broken vehicle windshield glass morphology; collision process; image processing technology; radial trace; sparse arc trace; steel ball quality; steel ball velocity; Accidents; Automotive components; Glass; Image processing; Morphology; Steel; Vehicles; image enhancement; image processing; morphology of broken vehicle windshield glass; noise filtering; quality; velocity;
Conference_Titel :
Transportation, Mechanical, and Electrical Engineering (TMEE), 2011 International Conference on
Conference_Location :
Changchun
Print_ISBN :
978-1-4577-1700-0
DOI :
10.1109/TMEE.2011.6199671