PEM-based random vibration analysis under service-braking conditions on an irregular track
ISSN: 0264-4401
Article publication date: 15 November 2023
Issue publication date: 5 December 2023
Abstract
Purpose
According to relevant research, non-uniform speed has a significant impact on the vehicle-track systems. Up to now, research work on it is still very limited. In this paper, the PEM is adopted to further transform it into a deterministic process to solve the vehicle’s problem of running at a non-uniform speed.
Design/methodology/approach
The multi-body vehicle model has 10 degrees of freedom and the track is regarded as a finite long beam supported by lumped sleepers and ballast blocks. They are connected via linear Hertz springs. The vertical track irregularity is a Gaussian stationary process in the space domain. It is transformed into a uniformly modulated nonstationary random process in the time domain with respect to the non-uniform vehicle speed. By solving the equation of motion of the coupled vehicle-track system with the pseudo-excitation method, the pseudo-response and consequently the power spectral density and the standard deviation of the structural response can be obtained.
Findings
Two kinds of vehicle braking programs are taken in the numerical example and some beneficial conclusions are drawn.
Originality/value
The pseudo-excitation method (PEM) was used to perform the random vibration analysis of a coupled non-uniform speed vehicle-track system. Transforming the track irregularity into a uniformly modulated nonstationary random process in time domain with respect to the non-uniform vehicle speed was undertaken. The pseudo-response of the coupled system is solved by applying the Newmark algorithm with constant space integral steps. The random vibration transfer mechanism of the coupled system is fully discussed.
Keywords
Acknowledgements
Support for this work was obtained from the National Natural Science Foundation (No. 11402043), the National Key Research and Development Program of China (No. 2020YFB1200200ZL-02) and Educational Commission of Liaoning Province of China (No. LJKMZ202308) and (No. LJKQZ202325).
Citation
Liu, X., Liu, Y., Zhang, Y. and Guo, H. (2023), "PEM-based random vibration analysis under service-braking conditions on an irregular track", Engineering Computations, Vol. 40 No. 9/10, pp. 3055-3074. https://doi.org/10.1108/EC-01-2023-0034
Publisher
:Emerald Publishing Limited
Copyright © 2023, Emerald Publishing Limited