Design of Vibration Absorbers for Step Motions and Step Disturbances

Author:

Fortgang Joel1,Singhose William1

Affiliation:

1. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332

Abstract

Mechanical systems with flexible dynamics often suffer from vibration induced by changes in the reference command or from external disturbances. The technique of adding a vibration absorber has proven useful at eliminating vibrations from external disturbances and rotational imbalances. Traditionally, vibration absorbers have been designed for systems subject to sinusoidal or random excitations. Here the applicability of vibration absorbers to systems with steplike changes in the reference command or similar disturbances is studied. This type of motion is more common in robotic applications. Here absorbers are designed using two methods; the first technique uses a weighting on peak overshoot and settling time to allow tradeoffs between the two performance criteria. The second simpler method utilizes an eigenvalue technique to predict the time constant. Both of these techniques provide the possibility of significant improvement in settling time. The performance of this absorber design strategies is compared with previously proposed vibration absorbers and experimental results verify its utility.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference16 articles.

1. Fortgang, Joel, and Singhose, William, 2001, “Design of Vibration Absorbers for Step Motions and Step Disturbances,” ASME 2001 DETC, Pittsburg, PA, ASME, New York.

2. Den Hartog, J. P., Mechanical Vibrations, 1985, Dover Publications, New York.

3. Hunt, J. B., 1979, Dynamic Vibration Absorbers, Mech. Eng. Publications LTD, London.

4. Korenev, Boris G., and Reznikov, Leonid M., 1993, Dynamic Vibration Absorbers: Theory and Technical Applications, Wiley, New York.

5. Sun, J. Q., Jolly, M. R., and Norris, M. A., 1995, “Passive, Adaptive, and Active Tuned Vibration Absorbers—A Survey,” Trans. ASME, 117, pp. 234–242.

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