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Robust control and actuator dynamics compensation for railway vehicles

Bideleh, SMM; Mei, TX; Berbyuk, V

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Authors

SMM Bideleh

V Berbyuk



Abstract

A robust controller is designed for active steering of a high speed train bogie with solid axle wheel sets to reduce track irregularity effects on the vehicle’s dynamics and improve stability and curving performance. A half-car railway vehicle model with seven degrees of freedom equipped with practical accelerometers and angular velocity sensors is considered for the H∞ control design. The controller is robust against the wheel/rail contact parameter variations. Field measurement data are used as the track irregularities in simulations. The control force is applied to the vehicle model via ball-screw electromechanical actuators. To compensate the actuator dynamics, the time delay is identified online and is used in a second order polynomial extrapolation carried out to predict and modify the control command to the actuator. The performance of the proposed controller and actuator dynamics compensation technique are examined on a one-car railway vehicle model with realistic structural parameters and nonlinear wheel and rail profiles. The results showed that for the case of nonlinear wheel and rail profiles significant improvements in the active control performance can be achieved using the proposed compensation technique.

Citation

Bideleh, S., Mei, T., & Berbyuk, V. (2016). Robust control and actuator dynamics compensation for railway vehicles. Vehicle System Dynamics, 54(12), 1762-1784. https://doi.org/10.1080/00423114.2016.1234627

Journal Article Type Article
Acceptance Date Sep 3, 2016
Online Publication Date Sep 26, 2016
Publication Date Sep 26, 2016
Deposit Date Sep 8, 2016
Publicly Available Date Sep 26, 2017
Journal Vehicle System Dynamics
Print ISSN 0042-3114
Electronic ISSN 1744-5159
Publisher Taylor and Francis
Volume 54
Issue 12
Pages 1762-1784
DOI https://doi.org/10.1080/00423114.2016.1234627
Publisher URL http://dx.doi.org/10.1080/00423114.2016.1234627
Related Public URLs http://www.tandfonline.com/toc/nvsd20/current

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