Optimization on the Crosswind Stability of Trains Using Neural Network Surrogate Model

被引:0
作者
Le Zhang
Tian Li
Jiye Zhang
Ronghuan Piao
机构
[1] Southwest Jiaotong University,State Key Laboratory of Traction Power
来源
Chinese Journal of Mechanical Engineering | 2021年 / 34卷
关键词
Safety; Surrogate model; Optimization; High-speed train; Crosswind;
D O I
暂无
中图分类号
学科分类号
摘要
Under the influence of crosswinds, the running safety of trains will decrease sharply, so it is necessary to optimize the suspension parameters of trains. This paper studies the dynamic performance of high-speed trains under crosswind conditions, and optimizes the running safety of train. A computational fluid dynamics simulation was used to determine the aerodynamic loads and moments experienced by a train. A series of dynamic models of a train, with different dynamic parameters were constructed, and analyzed, with safety metrics for these being determined. Finally, a surrogate model was built and an optimization algorithm was used upon this surrogate model, to find the minimum possible values for: derailment coefficient, vertical wheel-rail contact force, wheel load reduction ratio, wheel lateral force and overturning coefficient. There were 9 design variables, all associated with the dynamic parameters of the bogie. When the train was running with the speed of 350 km/h, under a crosswind speed of 15 m/s, the benchmark dynamic model performed poorly. The derailment coefficient was 1.31. The vertical wheel-rail contact force was 133.30 kN. The wheel load reduction rate was 0.643. The wheel lateral force was 85.67 kN, and the overturning coefficient was 0.425. After optimization, under the same running conditions, the metrics of the train were 0.268, 100.44 kN, 0.474, 34.36 kN, and 0.421, respectively. This paper show that by combining train aerodynamics, vehicle system dynamics and many-objective optimization theory, a train’s stability can be more comprehensively analyzed, with more safety metrics being considered.
引用
收藏
相关论文
共 63 条
[1]  
Tian HQ(2019)Review of research on high-speed railway aerodynamics in China Transportation Safety and Environment 1 1-21
[2]  
He X(2020)Review of aerodynamics of high-speed train-bridge system in crosswinds Journal of Central South University 27 1054-1073
[3]  
Li H(2011)Integration of crosswind forces into train dynamic modelling Proceedings of the Institution of Mechanical Engineers 225 154-164
[4]  
Baker C(2019)Aerodynamic loads and traffic safety of high-speed trains when passing through two windproof facilities under crosswind: A comparative study Engineering Structures 188 320-339
[5]  
Hemida H(2018)Assessment of overturning risk of high-speed trains in strong crosswinds using spectral analysis approach Journal of Wind Engineering and Industrial Aerodynamics 174 103-118
[6]  
Iwnick S(2018)Non-linear vehicle-bridge-wind interaction model for running safety assessment of high-speed trains over a high-pier viaduct Journal of Sound and Vibration 419 63-89
[7]  
Deng E(2018)Safety analysis of high speed trains under cross winds using indirect wheel-rail force measuring method Journal of Wind Engineering and Industrial Aerodynamics 183 55-67
[8]  
Yang WC(2017)Numerical simulation of aerodynamic performance of a couple multiple units high-speed train Vehicle System Dynamics 55 681-703
[9]  
Lei MF(2019)Crosswind stability evaluation of high-speed train using different wind models Chinese Journal of Mechanical Engineering 32 40-565
[10]  
Yan NJ(2019)Multi-objective optimization of active suspension system in electric vehicle with In-Wheel-Motor against the negative electromechanical coupling effects Mechanical Systems and Signal Processing 116 545-177