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Proceedings Paper

Modeling and simulation research of a new calibration platform for visual test system
Author(s): Liu Bo; Ye Dong; Rensheng Che
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Paper Abstract

It's a new method that 3D motion parameters of rocket motor nozzle are measured by vision measuring technology, but the dynamic mesurement precision of vision measuring system should be evaluated. The calibration platform with nozzle model can simulate the actual motion of rocket motor nozzle, and supply standard motion parameters for dynamic calibration to vision measurement system. After analyzing the motion of some type rocket motor nozzle, a new parallel table for calibration is proposed. The mechanism is made up of a base, a moving table and three links. There are three degrees of freedom, rotation on X or Y coordinate axis, displacement on Z coordinate axis. The rotation angle is measured by photoelectric encoder, the displacement is measured by grating scale. The closed loop test system have two main features. First, the rotation center is fixed because of cross shaft. Second, the position and pose of table can measured with high precision. Then the normal kinematic solution to position-pose of the table is presented. The virtual prototype is constructed on Pro/E, and the movement simulation is processed through Adams, thus the correctness of normal kinematic solutions to position-pose is verified.

Paper Details

Date Published: 20 May 2009
PDF: 5 pages
Proc. SPIE 7283, 4th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Optical Test and Measurement Technology and Equipment, 72831T (20 May 2009); doi: 10.1117/12.828684
Show Author Affiliations
Liu Bo, Harbin Institute of Technology (China)
Ye Dong, Harbin Institute of Technology (China)
Rensheng Che, Harbin Institute of Technology (China)


Published in SPIE Proceedings Vol. 7283:
4th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Optical Test and Measurement Technology and Equipment
Yudong Zhang; James C. Wyant; Robert A. Smythe; Hexin Wang, Editor(s)

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