Design Optimization of Battery Holder for Electric Vehicle

被引:0
|
作者
Bao, Nengsheng [1 ]
Zhao, Rongjiang [1 ]
机构
[1] Shantou Univ, Coll Engn, Shantou, Peoples R China
关键词
Battery holder; Mechanical property; Design and Optimization; RSM; LHS and ANN; LITHIUM-ION BATTERIES; HYBRID; STATE; MANAGEMENT; FRAMEWORK; PROGRESS; MODELS; HEALTH; PACK;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Lithium-ion battery pack composed of battery modules provide power for the electric vehicles. To ensure that lithium-ion batteries in battery modules are protected carefully, a battery holder was designed to provide support and protection for each lithium-ion battery. When the vehicles are at working, the battery pack will be affected by harsh environments, such as shocks due to road bumps and changes due to the road surface conditions. This will cause stress and deformation in the battery pack. The safety of vehicle largely lies on the stabilization of the battery pack, and the stabilization of the battery pack rests on the mechanical performance of the battery holder, for instance the capability to resist deformation and defy vibration. Furthermore, the lightweight of electric vehicles is still the primary method for saving energy, because lightweight can increase the service life of the battery pack while it can also increase the mileage of the vehicle. In this study, a composite design optimization method was proposed to optimize the mechanical properties of the battery holder (minimization of mass, minimization of the maximum deformation, and maximization of minimum natural frequency). The proposed method includes four steps. In the first step, the finite element model under load was obtained based on the static analysis. The natural frequency and the geometric volume of the battery holder were obtained Based on the modal analysis. In the second step, the method of Latin Hypercube Sampling was used to obtain the calculation points to design the experiment, and the Response Surface Method was used for developing an empirical model for the three mechanical characteristics. In the third step, the highest deformation, natural frequency and volume of the battery holder were further optimized based on Latin hypercube sampling and artificial neural network through the non-dominated sorting genetic algorithm. In the last step, the optimal inputs calculated from NSGA II was used to manufacture battery holder. Conclusions and research proposals are summarized to conduct the distant work.
引用
收藏
页码:79 / 84
页数:6
相关论文
共 50 条
  • [41] Velocity Profile Optimization of an Electric Vehicle with Battery Dynamic Model
    Naeem, Hafiz Muhammad Yasir
    Bhatti, Aamer Iqbal
    Butt, Yasir Awais
    Ahmed, Qadeer
    2019 12TH ASIAN CONTROL CONFERENCE (ASCC), 2019, : 609 - 614
  • [42] SHARED AUTONOMOUS VEHICLE SYSTEM DESIGN FOR BATTERY ELECTRIC VEHICLE (BEV) AND FUEL CELL ELECTRIC VEHICLE (FCEV)
    Lee, Ungki
    Jeon, Sunghyun
    Lee, Ikjin
    PROCEEDINGS OF ASME 2021 INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, IDETC-CIE2021, VOL 3B, 2021,
  • [43] Optimization of Electric Vehicle Charging for Battery Maintenance and Degradation Management
    Chung, Chien-Hsin
    Jangra, Sidharth
    Lai, Qingzhi
    Lin, Xinfan
    IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2020, 6 (03): : 958 - 969
  • [44] Optimization Strategy of the Electric Vehicle Power Battery Based on the Convex Optimization Algorithm
    Wang, Xuanxuan
    Ji, Wujun
    Gao, Yun
    PROCESSES, 2023, 11 (05)
  • [45] Orthogonal optimization design for hybrid electric vehicle
    Zeng, Xiaohua
    Wang, Qingnian
    Wang, Weihua
    Chu, Liang
    Nongye Jixie Xuebao/Transactions of the Chinese Society of Agricultural Machinery, 2006, 37 (05): : 26 - 28
  • [46] Design Optimization of a Hybrid Electric Vehicle Powertrain
    Mangun, Firdause
    Idres, Moumen
    Abdullah, Kassim
    3RD INTERNATIONAL CONFERENCE ON MECHANICAL, AUTOMOTIVE AND AEROSPACE ENGINEERING 2016, 2017, 184
  • [47] Multiphysics simulation optimization framework for lithium-ion battery pack design for electric vehicle applications
    Astaneh, Majid
    Andric, Jelena
    Löfdahl, Lennart
    Stopp, Peter
    Energy, 2022, 239
  • [48] Optimization of Circular Coil Design for Wireless Power Transfer System in Electric Vehicle Battery Charging Applications
    Ravi Kumar Yakala
    Sumit Pramanick
    Debi Prasad Nayak
    Manish Kumar
    Transactions of the Indian National Academy of Engineering, 2021, 6 (3) : 765 - 774
  • [49] Multiphysics simulation optimization framework for lithium-ion battery pack design for electric vehicle applications
    Astaneh, Majid
    Andric, Jelena
    Lofdahl, Lennart
    Stopp, Peter
    ENERGY, 2022, 239
  • [50] Design of an Electric Vehicle Battery Box Based on Electric-Thermal Model
    Han, Jing
    Wu, Xiaogang
    Demenkov, N. P.
    Tian, Yexin
    2016 11TH INTERNATIONAL FORUM ON STRATEGIC TECHNOLOGY (IFOST), PTS 1 AND 2, 2016,