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Dynamic response simulation through system identification.

Roberts, D.E.; Hay, N.C.

Authors

D.E. Roberts

N.C. Hay



Abstract

Nonlinear dynamic systems, such as those associated with structural testing of vehicles, are considered. The vehicle, or a substructure, is mounted in a test rig that is normally driven by servo-hydraulic actuators. The specimen and test rig form a nonlinear dynamic system. These test systems assure the durability of vehicles by reproducing a structural response time history that has been measured in a road test of a vehicle. For this, a force or displacement input to the actuators’ control system must be determined as a function of time.

Current practice employs an iterative algorithm, using a frequency response function to represent the system. The conventional iteration is a particular version of well established numerical techniques for solving nonlinear systems. However, the success of the iteration is dependent on the degree of nonlinearity and on the level of noise in the signals coming from the system.

This paper advocates identifying the system to improve its representation in the iterative algorithm. The theory underpinning the alternative algorithm is presented and a comparison is made between the performances of the two algorithms, using computer simulations based on Duffing's equation. These simulations show that, even for this simple model, the alternative algorithm is faster, more reliable and more tolerant of response noise.

Citation

Roberts, D., & Hay, N. (2006). Dynamic response simulation through system identification. Journal of sound and vibration, 295(3-5), 1017-1027. https://doi.org/10.1016/j.jsv.2006.02.004

Journal Article Type Article
Online Publication Date Apr 27, 2006
Publication Date Aug 22, 2006
Deposit Date May 16, 2008
Publicly Available Date May 16, 2008
Journal Journal of sound and vibration
Print ISSN 1095-8568
Peer Reviewed Peer Reviewed
Volume 295
Issue 3-5
Pages 1017-1027
DOI https://doi.org/10.1016/j.jsv.2006.02.004
Keywords Laboratory simulation testing, dynamic system, spectral analysis, random signal, Duffing’s equation, non-linear algebraic equations, numerical solution, system identification, MATLAB
Public URL http://researchrepository.napier.ac.uk/id/eprint/1858
Contract Date May 16, 2008

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