MATHEMATICAL MODELING OF A PIEZO-ACTUATED CANTILEVER BEAM WITH INTERFEROMETER FEEDBACK

被引:0
作者
Kochavi, Jordan D. [1 ]
Xing, Siyuan [1 ]
机构
[1] Calif Polytech State Univ San Luis Obispo, Dept Mech Engn, San Luis Obispo, CA 93407 USA
来源
PROCEEDINGS OF ASME 2022 INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, IMECE2022, VOL 5 | 2022年
关键词
Laser interferometry; piezo-electric; Euler-Bernoulli beam; ACTIVE VIBRATION CONTROL;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Laser interferometry, commonly used in high-precision motion control systems, is rarely adopted in experimental vibration analysis because their installation and mounting are invasive to dynamical systems. However, new technology in high-precision manufacturing, such as vibration-assisted machining, has shown the meaningfulness of using laser interferometers implemented in motion control systems for vibration analysis, system identification, and feedback control. To this end, this study investigates the use of laser interferometry for vibration analysis through a piezoelectrically actuated cantilever beam. The complete dynamics of the cantilevered beam with a piezoelectric actuator and a laser interferometer is modeled through the Euler-Bernoulli beam theory. Through the method of separation of variables, the original continuous system is transformed into a discrete system represented in a state-space form. The response of the beam is analytically predicted, then compared with the numerical result from a multibody model constructed in Simscape. The frequency response at the retroreflector is obtained through the Laplace transformation of the state-space form. It is found that the first modal frequencies from analytical prediction precisely agree with their experimental counterpart.
引用
收藏
页数:6
相关论文
共 16 条
[1]  
[Anonymous], Physical and Piezoelectric Properties of APC Materials
[2]  
[Anonymous], 2006, ADV IND CON
[3]   Review of vibration-assisted machining [J].
Brehl, D. E. ;
Dow, T. A. .
PRECISION ENGINEERING-JOURNAL OF THE INTERNATIONAL SOCIETIES FOR PRECISION ENGINEERING AND NANOTECHNOLOGY, 2008, 32 (03) :153-172
[4]   USE OF PIEZOELECTRIC ACTUATORS AS ELEMENTS OF INTELLIGENT STRUCTURES [J].
CRAWLEY, EF ;
DELUIS, J .
AIAA JOURNAL, 1987, 25 (10) :1373-1385
[5]   Phase delay control of a cantilever beam [J].
Hwang, JK ;
Choi, CH ;
Song, CK .
JOURNAL OF VIBRATION AND CONTROL, 2000, 6 (02) :257-272
[6]   Boundary control of harmonic disturbances on flexible cantilever beams using piezoelectric patch actuators [J].
Karagiannis, Dimitrios A. ;
Clayton, Garrett M. ;
Nataraj, C. .
JOURNAL OF VIBRATION AND CONTROL, 2016, 22 (18) :3916-3929
[7]   Active vibration control of cantilever beam by using PID based output feedback controller [J].
Khot, S. M. ;
Yelve, Nitesh P. ;
Tomar, Rajat ;
Desai, Sameer ;
Vittal, S. .
JOURNAL OF VIBRATION AND CONTROL, 2012, 18 (03) :366-372
[8]  
Kochavi J, 2022, GitHub Repository
[9]   Optimizing time delay feedback for active vibration control of a cantilever beam using a genetic algorithm [J].
Mirafzal, Seyed Hamed ;
Khorasani, Amir Mahyar ;
Ghasemi, Amir Hossein .
JOURNAL OF VIBRATION AND CONTROL, 2016, 22 (19) :4047-4061
[10]  
SAWADA Y, 1992, IEEE INTERNATIONAL CONFERENCE ON SYSTEMS ENGINEERING, P436, DOI 10.1109/ICSYSE.1992.236994