Giant Magnetostrictive Material Actuator Based Active Vibration Control-a Modified α - LMS Algorithm

Article Preview

Abstract:

A modified α-LMS algorithm is presented and is applied to the controller design of active vibration control. A magnetostrictive material actuator is used as experimental equipment for active vibration control in this paper. The merit of the presented method is that it is not necessary to build the mathematical model of magnetostrictive actuator. The experimental result shows that the controller designed is efficient for active vibration control.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volumes 546-549)

Pages:

2219-2222

Citation:

Online since:

May 2007

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2007 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] D. K. Kleinke: Development of Magnetostrictive Sensors (Ph.D. Dissertation, Wayne State University, Detroit, Michigan, 1995) u(t) e(t) u(t) e(t).

Google Scholar

[2] Z. J. Geng and L. S. Haynes: Six Degree-of-Freedom Active Vibration Control Using the Stewart Platforms. IEEE Transactions on Control Systems Technology, Vol. 2, No. 1 (1994), pp.45-53.

DOI: 10.1109/87.273110

Google Scholar

[3] R. Venkataraman: Modeling and Adaptive Control of Magnetostrictive Actuators (Ph.D. Dissertation, University of Maryland, 1999).

Google Scholar

[4] J. M. Nealis and R. C. Smith: An Adaptive Control Method for magnetostrictive Transducers with Hysteresis. Proceedings of the 40th IEEE Conference on Decision and Control, Orlando, Florida USA (2001), pp.4260-4265.

DOI: 10.1109/cdc.2001.980862

Google Scholar

[5] J. Mao,C. Li,H. Xu,C. Jiang,L. Lin. On Control of Six Freedom Magnetostrictive Smart Structure, Materials Science Forum, Vol. 475-479(2005), pp.2107-2110.

DOI: 10.4028/www.scientific.net/msf.475-479.2111

Google Scholar

[6] X. B. Tan: Control of Smart Actuators (Ph.D. Dissertation, University of Maryland, 2002).

Google Scholar

[7] X. B. Tan and J. S. Baras: Modeling and Control of a Magnetostrictive Actuator. Proceedings of the 41th IEEE Conference on Decision and Control, Las Vegas, Nevada USA (2002), pp.866-872.

Google Scholar

[8] X. B. Tan and J. S. Baras: A Robust Control Framework for Smart Actuators. Proceedings of the American Control Conference, Denver, Colorado (2003), pp.4645-4650.

Google Scholar

[9] F. Li, J. Mao, H. Ding, W. Zhang, H. Xu and C. Jiang. A New Method to Identify the Preisach Distribution Function of Hysteresis, Materials Science Forum, Vol. 475-479(2005), pp.2107-2110.

DOI: 10.4028/www.scientific.net/msf.475-479.2107

Google Scholar

[10] Z. Song,J. Mao,C. Li,H. Xu,C. Jiang. Magnetostrictive Material Actuator based Active Vibration Control-a Heuristic Iterative Learning Control Method, Materials Science Forum, Vol. 475-479 (2005), pp.2103-2106.

DOI: 10.4028/www.scientific.net/msf.475-479.2103

Google Scholar