Reducing Noise in an Electric Vehicle Powertrain by Means of Numerical Simulation

被引:4
|
作者
James, Barry [1 ]
Hofmann, Andreas [2 ]
De Doncker, Rik W. [2 ]
机构
[1] Romax Technol Ltd, Nottingham, England
[2] Rhein Westfal TH Aachen, Aachen, Germany
来源
关键词
Switched reluctance motors; Noise reduction; Dynamic response;
D O I
10.1007/978-3-319-24055-8_3
中图分类号
U [交通运输];
学科分类号
08 ; 0823 ;
摘要
The noise performance of fully electric vehicles is essential to ensure that they gain market acceptance. This can be a challenge for several reasons. Firstly, there is no masking from the internal combustion engine. Next, there is pressure to move to cost-efficient motor designs such as Switched Reluctance Motors, which have worse vibro-acoustic behaviour than their Permanent Magnet counterparts. Finally, power-dense, higher speed motors run closer fundamental frequency to the structural resonances of the system [1]. Experience has shown that this challenge is frequently not met. Reputable suppliers have designed and developed their "quiet" sub-systems to state of the art levels, only to discover that the assembled E-powertrain is unacceptably noisy. The paper describes the process and arising results for the noise simulation of the complete powertrain. The dynamic properties are efficiently modelled as a complete system and subjected to motor excitation (torque ripple, electro-magnetic forces and rotor imbalance). Innovation in this project comes from the speed of the modelling and analysis, so that analysis and data interpretation comes early enough in a project to be effective in reducing the noise problems. This contrasts with the approach of simulating problems that have already occurred in testing. Actions to reduce the motor noise are explained and identified. System dynamic response identifies the operating points in which different excitation mechanisms are most problematic and steps are taken to reduce the dynamic response. Also, problematic conditions can be identified where innovative motor control algorithms are necessary.
引用
收藏
页码:29 / 46
页数:18
相关论文
共 50 条
  • [31] Light electric vehicle powertrain: Modeling, simulation, and experimentation for engineering students using PSIM
    Vidal-Bravo, Salvador
    De La Cruz, Javier
    Arrieta Paternina, Mario Roberto
    Borunda, Monica
    Zamora-Mendez, Alejandro
    COMPUTER APPLICATIONS IN ENGINEERING EDUCATION, 2020, 28 (02) : 406 - 419
  • [32] Powertrain analysis and dynamic performance simulation of ultra-high-speed electric vehicle
    Zhou K.
    Zhou, Kai (zhoukai4564@163.com), 1600, Inderscience Enterprises Ltd., 29, route de Pre-Bois, Case Postale 856, CH-1215 Geneva 15, CH-1215, Switzerland (09): : 33 - 48
  • [33] Energy Storage and Powertrain Systems for Electric Vehicle
    Cuscov, Ivan
    Krishnamoorthy, Sumesh
    Vershinin, Y. A.
    2011 14TH INTERNATIONAL IEEE CONFERENCE ON INTELLIGENT TRANSPORTATION SYSTEMS (ITSC), 2011, : 698 - 703
  • [34] Predictive Thermal Management for an Electric Vehicle Powertrain
    Schaut, Stefan
    Arnold, Eckhard
    Sawodny, Oliver
    IEEE TRANSACTIONS ON INTELLIGENT VEHICLES, 2023, 8 (02): : 1957 - 1970
  • [35] Design of a Laboratory Electric Vehicle Powertrain System
    Benecki, Kevin
    Prins, Robert
    2017 SYSTEMS AND INFORMATION ENGINEERING DESIGN SYMPOSIUM (SIEDS), 2017, : 44 - 49
  • [36] Matching of motor and powertrain parameters of electric vehicle
    Ji, Fen-Zhu
    Gao, Feng
    Huanan Ligong Daxue Xuebao/Journal of South China University of Technology (Natural Science), 2006, 34 (04): : 33 - 37
  • [37] Seamless mechatronic design of an electric vehicle powertrain
    DeCharentenay, F
    Delhom, M
    Rault, A
    BREAKING PARADIGMS: THE SEAMLESS ELECTRO-MECHANICAL VEHICLES: PROCEEDINGS OF THE 1996 INTERNATIONAL CONGRESS ON TRANSPORTATION ELECTRONICS - CONVERGENCE 1996, 1996, : 413 - 421
  • [38] RESEARCH ON PARAMETER MATCHING OF ELECTRIC VEHICLE POWERTRAIN
    Zhang, Pan
    Chen, Yong
    ENERGY AND MECHANICAL ENGINEERING, 2016, : 685 - 692
  • [39] Development of a Powertrain System for Hybrid Electric Vehicle
    Chen Hongtao
    Wang Renguang
    Zhang Lintao
    Yu Chao
    RENEWABLE AND SUSTAINABLE ENERGY II, PTS 1-4, 2012, 512-515 : 2594 - 2597
  • [40] Physical modeling of electric hybrid vehicle powertrain
    Cerovsky, Zd.
    2006 INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS, ELECTRICAL DRIVES, AUTOMATION AND MOTION, VOLS 1-3, 2006, : 218 - 222