Design of Elastic Suspension for Traction Transformer of EMU Based on Adaptive Response Surface Method
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    Abstract:

    In view of the phenomenon that the large vibration of the car body floor leads to uncomfortable riding under the original hanging stiffness of a certain type of EMU, the optimal design of the hanging stiffness of traction transformer of the EMU was carried out. In the process of optimization design, the Latin hypercube design (LHD) method was used to sample. According to the sample data obtained, the adaptive response surface method (ARSM) was introduced to optimize the design of the suspension stiffness of transformer, which avoided the problem that the traditional response surface method was completely dependent on the original sample points. After the design optimization, the hanging stiffness of traction transformer was verified, and it was found that the vertical vibration acceleration of the car body floor was greatly reduced. The hoisting frequency was 9.0 Hz, which was much lower than the first vertical bending frequency of the rigid hanging car body. After modal analysis, the first vertical bending frequency was kept above 10 Hz, which conformed to the requirements of the modal matching for EMU.

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王洋洋,宫岛,周劲松.基于自适应响应面法的动车组牵引变压器弹性吊挂设计[J].华东交通大学学报英文版,2019,36(6):1-6.
Wang Yangyang, Gong Dao, Zhou Jingsong. Design of Elastic Suspension for Traction Transformer of EMU Based on Adaptive Response Surface Method[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2019,36(6):1-6

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  • Online: June 01,2021
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