Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions

Whine noise from the electric powertrain system of electric vehicles, including electromagnetic noise and gear-meshing noise, significantly affects vehicle comfort and has been getting growing concern. In order to identify and avoid whine problems as early as possible in the powertrain development p...

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Main Authors: Chenghao Deng, Qingpeng Deng, Weiguo Liu, Cheng Yu, Jianjun Hu, Xiaofeng Li
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2020/6617291
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spelling doaj-5bdbc6787bf748269f4c660a3a2206642020-12-07T09:08:28ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472020-01-01202010.1155/2020/66172916617291Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating ConditionsChenghao Deng0Qingpeng Deng1Weiguo Liu2Cheng Yu3Jianjun Hu4Xiaofeng Li5School of Automotive Engineering, Chongqing University, Chongqing 400040, ChinaChongqing Chang’an New Energy Automobile Technology Co. Ltd., Chongqing 401120, ChinaChongqing Chang’an New Energy Automobile Technology Co. Ltd., Chongqing 401120, ChinaChongqing Chang’an New Energy Automobile Technology Co. Ltd., Chongqing 401120, ChinaSchool of Automotive Engineering, Chongqing University, Chongqing 400040, ChinaChongqing Deyin Technology Co. Ltd., Chongqing 400050, ChinaWhine noise from the electric powertrain system of electric vehicles, including electromagnetic noise and gear-meshing noise, significantly affects vehicle comfort and has been getting growing concern. In order to identify and avoid whine problems as early as possible in the powertrain development process, this paper presents a vibration and noise simulation methodology for the electric powertrain system of vehicles under speed-varying operating conditions. The electromagnetic forces on the stator teeth of the motor and the bearing forces on the gearbox for several constant-speed operating conditions are obtained first by electromagnetic field simulation and multi-body dynamic simulation, respectively. Order forces for the speed-varying operating condition are generated by interpolation between the obtained forces, before they are applied on the mechanical model whose natural modes have been calibrated in advance by tested modes. The whine noise radiated from the powertrain is then obtained based on acoustic boundary element analysis. The simulated bearing forces indicate that the overlooking of the motor torque ripple does not result in significant loss in simulation accuracy of electromagnetic noise. The simulation results and tested data show good consistency, with the relative frequency deviation of local peaks being less than 8% and the error of the average sound pressure level (SPL) being mostly below 10 dB (A).http://dx.doi.org/10.1155/2020/6617291
collection DOAJ
language English
format Article
sources DOAJ
author Chenghao Deng
Qingpeng Deng
Weiguo Liu
Cheng Yu
Jianjun Hu
Xiaofeng Li
spellingShingle Chenghao Deng
Qingpeng Deng
Weiguo Liu
Cheng Yu
Jianjun Hu
Xiaofeng Li
Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
Mathematical Problems in Engineering
author_facet Chenghao Deng
Qingpeng Deng
Weiguo Liu
Cheng Yu
Jianjun Hu
Xiaofeng Li
author_sort Chenghao Deng
title Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
title_short Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
title_full Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
title_fullStr Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
title_full_unstemmed Analysis of Vibration and Noise for the Powertrain System of Electric Vehicles under Speed-Varying Operating Conditions
title_sort analysis of vibration and noise for the powertrain system of electric vehicles under speed-varying operating conditions
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2020-01-01
description Whine noise from the electric powertrain system of electric vehicles, including electromagnetic noise and gear-meshing noise, significantly affects vehicle comfort and has been getting growing concern. In order to identify and avoid whine problems as early as possible in the powertrain development process, this paper presents a vibration and noise simulation methodology for the electric powertrain system of vehicles under speed-varying operating conditions. The electromagnetic forces on the stator teeth of the motor and the bearing forces on the gearbox for several constant-speed operating conditions are obtained first by electromagnetic field simulation and multi-body dynamic simulation, respectively. Order forces for the speed-varying operating condition are generated by interpolation between the obtained forces, before they are applied on the mechanical model whose natural modes have been calibrated in advance by tested modes. The whine noise radiated from the powertrain is then obtained based on acoustic boundary element analysis. The simulated bearing forces indicate that the overlooking of the motor torque ripple does not result in significant loss in simulation accuracy of electromagnetic noise. The simulation results and tested data show good consistency, with the relative frequency deviation of local peaks being less than 8% and the error of the average sound pressure level (SPL) being mostly below 10 dB (A).
url http://dx.doi.org/10.1155/2020/6617291
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