Through a detailed control assessment of a conventional railway wheelset, this paper addresses some of the key design issues in the development of active primary suspensions for the stabilization control of railway vehicles. It reveals the basic feedback requirements for achieving adequate stability and hence provides a useful insight of how active controllers may be structured. For the control design, a number of factors in addition to the stabilization are considered including the actuation requirements, creep forces at the wheel-rail contact, track following as well as robustness against parameter variations. Based on the outcome of the control analysis, the study proposes a design and optimization procedure for the development of active wheelset control. The design method is applied to a two-axle vehicle in a case study, which shows that the new design approach is advantageous when compared with other design methods previously studied.
Skip Nav Destination
t.x.mei@leeds.ac.uk
Article navigation
January 2008
Research Papers
Control Design for the Active Stabilization of Rail Wheelsets
T. X. Mei,
T. X. Mei
School of Electronic and Electrical Engineering,
t.x.mei@leeds.ac.uk
University of Leeds
, Leeds LS2 9JT, United Kingdom
Search for other works by this author on:
H. Li
H. Li
School of Electronic and Electrical Engineering,
University of Leeds
, Leeds LS2 9JT, United Kingdom
Search for other works by this author on:
T. X. Mei
School of Electronic and Electrical Engineering,
University of Leeds
, Leeds LS2 9JT, United Kingdomt.x.mei@leeds.ac.uk
H. Li
School of Electronic and Electrical Engineering,
University of Leeds
, Leeds LS2 9JT, United KingdomJ. Dyn. Sys., Meas., Control. Jan 2008, 130(1): 011002 (9 pages)
Published Online: December 5, 2007
Article history
Received:
October 5, 2005
Revised:
April 3, 2007
Published:
December 5, 2007
Citation
Mei, T. X., and Li, H. (December 5, 2007). "Control Design for the Active Stabilization of Rail Wheelsets." ASME. J. Dyn. Sys., Meas., Control. January 2008; 130(1): 011002. https://doi.org/10.1115/1.2807062
Download citation file:
Get Email Alerts
Control of Autonomous Vehicles via Multi-Stage Linear Feedback Design
J. Dyn. Sys., Meas., Control
Co-Optimization of Design and Control of Energy Efficient Hybrid Electric Vehicles Using Coordination Schemes
J. Dyn. Sys., Meas., Control
Computationally Efficient Hierarchical Mpc via Koopman Operator
J. Dyn. Sys., Meas., Control
Balancing a Stick with Eyes Shut: Inverted Pendulum On a Cart Without Angle Measurement
J. Dyn. Sys., Meas., Control
Related Articles
Dynamics of Independently Rotating Wheel System in the Analysis of Multibody Railroad Vehicles
J. Comput. Nonlinear Dynam (January,2011)
Directions of the Tangential Creep Forces in Railroad Vehicle Dynamics
J. Comput. Nonlinear Dynam (April,2010)
Nonlinear Analysis on Hunting Stability for High-Speed Railway Vehicle Trucks on Curved Tracks
J. Vib. Acoust (August,2005)
Effect of the Linearization of the Kinematic Equations in Railroad Vehicle System Dynamics
J. Comput. Nonlinear Dynam (January,2006)
Related Proceedings Papers
Related Chapters
Submarine Sediment Scouring in Sea-Crossing Bridge Locations (Xiamen Rail-Cum-Road Bridge on Fuzhou-Xiamen Railroad Taken as an Example)
Geological Engineering: Proceedings of the 1 st International Conference (ICGE 2007)
User-Interactive Futuristic Displays Based on PIC Microcontroller
International Conference on Computer and Computer Intelligence (ICCCI 2011)
Rationale for Human-Powered Vehicle Design and Use
Design of Human Powered Vehicles