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내부 기진력을 가지는 기계 구조물의 진동억제를 위한 능동진동제어 알고리듬 개발Active Vibration Control Algorithm Development for the Vibration Suppression of Mechanical Structure Having Internal Excitation

Other Titles
Active Vibration Control Algorithm Development for the Vibration Suppression of Mechanical Structure Having Internal Excitation
Authors
오지택이창진전동현곽문규
Issue Date
Oct-2017
Publisher
한국소음진동공학회
Keywords
능동진동제어; 음가속궤환제어; 수정고차조화제어; 대응력제어; Active Vibration Control; Negative Acceleration Feedback Control; Modified Higher Harmonic Control; Counter-force Control
Citation
한국소음진동공학회논문집, v.27, no.5, pp 581 - 592
Pages
12
Indexed
KCI
Journal Title
한국소음진동공학회논문집
Volume
27
Number
5
Start Page
581
End Page
592
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/17196
DOI
10.5050/KSNVE.2017.27.5.581
ISSN
1598-2785
2287-5476
Abstract
The resolution of display devices such as LCD and OLED is affected by the surface-finishing technology which uses a linear laser for crystallizing amorphous silicon to poly-silicon. Surface-finishing is carried out by the linear laser that radiates laser beam on a TFT panel. In doing so, the laser beam device is vibrated to form uniform distribution on the surface. However, the vibration of the laser beam device is transferred to a main structure and results in non-uniformity. Hence, the vibration of the main structure should be suppressed to guarantee the surface quality. In this study, the test bed similar to a real laser beam structure was built. The dynamic model was derived and active vibration control algorithms such as NAFC (negative acceleration feedback control), MHHC (modified higher harmonic control), and CFC (counter-force control) were considered. Since the excitation is known a priori, the hybrid control combines the NAFC and the CFC or the MHHC and the CFC. It is found both theoretically and experimentally that the hybrid control is effective to suppress vibrations of the main structure while the laser beam device is excited by harmonic disturbance.
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College of Engineering > Department of Mechanical, Robotics and Energy Engineering > 1. Journal Articles

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