A non-linearly damped single-degree-of-freedom (s.d.o.f.) system under broadband random excitation is considered. A procedure for in-service identi"cation of the damping characteristic from measured stationary response is described. The procedure is based on the stochastic averaging method. The expl
IDENTIFICATION OF NON-LINEAR HYSTERETIC ISOLATORS FROM PERIODIC VIBRATION TESTS
โ Scribed by Y.Q. Ni; J.M. Ko; C.W. Wong
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 338 KB
- Volume
- 217
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
This paper addresses the parameter identification of friction-type hysteretic isolators based on the versatile Bouc-Wen differential model. A frequency domain method is developed to identify the model parameters from the experimental data of periodic vibration tests. All the five parameters in the hysteretic model are obtained by a one-stage parameter estimate scheme. Numerical simulations show that the proposed method is insensitive to the noise in the observation signals. This method is then implemented to model and identify the experimental hysteresis loops of wire-cable vibration isolators, and the accuracy of the parameter identification is verified by comparing the measured and identified harmonic components of the hysteretic restoring force.
๐ SIMILAR VOLUMES
A new method based on time}frequency representations is presented for identifying the non-linear modal parameters of a multi-degree-of-freedom non-linear lightly damped mechanical system. The coupled non-linear modes are "rst introduced. It is shown that, by using the coupled non-linear modes, the f