DocumentCode
420604
Title
Adaptive control for light-beam stability in mechanical vibration environment
Author
Fan, Guobin ; Jia, Jianyuan ; Chen, Guimin
Author_Institution
Sch. of Electro-Mech. Eng., Xidian Univ., Xi´´an, China
Volume
1
fYear
2004
fDate
15-19 June 2004
Firstpage
449
Abstract
In adverse mechanical vibration environment, the light-beam stability control becomes the key technique to improve the performance of optical system. Being encountered to the problem of light-beam stability control of two-dimension optical system in vibration environment, the model reference adaptive control system is established based on the theory of matrix optics, vibration mechanics, photoelectric detecting technique and automation theory. A new photoelectric detecting method was proposed, the principle of piezoelectricity actuator was described, and the numerical simulation example was given in details. The results show that the system is of broad bandwidth and fast response, and strong robustness to random initial values. It can improve response characteristic and control precision by choosing variable parameters reasonably. High precision photoelectric displacement detecting and high driving quality of piezoelectricity actuator are the key techniques to realize the light-beam stability control system.
Keywords
model reference adaptive control systems; multidimensional systems; optical control; photodetectors; piezoelectric actuators; stability; vibration control; vibrations; automation theory; high precision photoelectric displacement detection; light beam stability control; matrix optics theory; mechanical vibration environment; model reference adaptive control system; numerical simulation; photoelectric detecting technique; piezoelectricity actuator driving quality; robustness; two dimension optical system; vibration mechanics; Adaptive control; Adaptive optics; Automatic control; Control systems; Lighting control; Optical control; Piezoelectric actuators; Piezoelectricity; Stability; Vibration control;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Control and Automation, 2004. WCICA 2004. Fifth World Congress on
Print_ISBN
0-7803-8273-0
Type
conf
DOI
10.1109/WCICA.2004.1340612
Filename
1340612
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