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Wear/comfort Pareto optimisation of bogie suspension
Authors:Seyed Milad Mousavi Bideleh  Viktor Berbyuk  Rickard Persson
Institution:1. Department of Applied Mechanics, Chalmers University of Technology, Gothenburg, Swedenmilad.mousavi@chalmers.se;3. Department of Applied Mechanics, Chalmers University of Technology, Gothenburg, Sweden;4. Rolling Stock Central and Northern Europe and Asia, Bombardier Transportation, V?ster?s, Sweden
Abstract:Pareto optimisation of bogie suspension components is considered for a 50 degrees of freedom railway vehicle model to reduce wheel/rail contact wear and improve passenger ride comfort. Several operational scenarios including tracks with different curve radii ranging from very small radii up to straight tracks are considered for the analysis. In each case, the maximum admissible speed is applied to the vehicle. Design parameters are categorised into two levels and the wear/comfort Pareto optimisation is accordingly accomplished in a multistep manner to improve the computational efficiency. The genetic algorithm (GA) is employed to perform the multi-objective optimisation. Two suspension system configurations are considered, a symmetric and an asymmetric in which the primary or secondary suspension elements on the right- and left-hand sides of the vehicle are not the same. It is shown that the vehicle performance on curves can be significantly improved using the asymmetric suspension configuration. The Pareto-optimised values of the design parameters achieved here guarantee wear reduction and comfort improvement for railway vehicles and can also be utilised in developing the reference vehicle models for design of bogie active suspension systems.
Keywords:Pareto optimisation  genetic algorithm  bogie suspension  wear  comfort
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