Mechatronic suspension design for full rail vehicle system

Author:

Graa Mortadha1,Nejlaoui Mohamed1,Houidi Ajmi2,Affi Zouhaier1,Romdhane Lotfi23

Affiliation:

1. Laboratoire de Génie Mécanique (LGM), Ecole Nationale d’Ingénieurs de Monastir, Université de Monastir, Monastir, Tunisie

2. Laboratoire de Mécanique de Sousse (LMS), Ecole Nationale d’Ingénieurs de Sousse, Université de Sousse, Sousse, Tunisie

3. College of Engineering, the American University of Sharjah, Sharjah, UAE

Abstract

In this paper, an analytical mechatronic dynamic design model of a full rail vehicle system is developed. Based on the rail vehicle motion, its degree of freedom can be reduced to only 38. This reduction is necessary for the model simplicity. The developed model is validated with experimental result and compared with other one from literature. The real characteristics of the actuators are discussed, and its controller is designed. A mechatronic model that expresses the controlled tracking error as function of the vehicle dynamics and the actuator characteristics is developed. This model is used by the linear quadratic regulator approach to identify the mechatronic rail vehicle proportional–integral–derivative controller’s gains. The mechatronic rail vehicle comfort is evaluated in terms of the passenger displacement, acceleration and frequency as a response of a rail irregularities caused by a lateral and two vertical track irregularities. The simulations of vibration analysis are obtained in time and frequency domains and compared with railway vehicle status. The robustness of the designed mechatronic rail vehicle is verified by simulations, carried out for the cases of car body mass variations. The results show the effectiveness of the proposed mechatronic rail vehicle design which improves significantly the transportation of passengers.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Condensed Matter Physics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. An investigation on the active control strategy for a high-speed pantograph using co-simulations;Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering;2018-06-27

2. Ride comfort of a higher speed rail vehicle using a magnetorheological suspension system;Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics;2017-05-02

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