Driving and Braking Control of PM Synchronous Motor Based on Low-resolution Hall Sensor for Battery Electric Vehicle

被引:0
|
作者
GU Jing [1 ]
OUYANG Minggao [1 ]
LI Jianqiu [1 ]
LU Dongbin [1 ]
FANG Chuan [1 ]
MA Yan [1 ]
机构
[1] State Key Laboratory of Automotive Safety and Energy,Tsinghua University
关键词
battery electric vehicle; field oriented control; low-resolution Hall sensor; regenerative braking; plug braking; six-step commutation braking;
D O I
暂无
中图分类号
TM341 [同步电机];
学科分类号
080801 ;
摘要
Resolvers are normally employed for rotor positioning in motors for electric vehicles,but resolvers are expensive and vulnerable to vibrations.Hall sensors have the advantages of low cost and high reliability,but the positioning accuracy is low.Motors with Hall sensors are typically controlled by six-step commutation algorithm,which brings high torque ripple.This paper studies the high-performance driving and braking control of the in-wheel permanent magnetic synchronous motor(PMSM) based on low-resolution Hall sensors.Field oriented control(FOC) based on Hall-effect sensors is developed to reduce the torque ripple.The positioning accuracy of the Hall sensors is improved by interpolation between two consecutive Hall signals using the estimated motor speed.The position error from the misalignment of the Hall sensors is compensated by the precise calibration of Hall transition timing.The braking control algorithms based on six-step commutation and FOC are studied.Two variants of the six-step commutation braking control,namely,half-bridge commutation and full-bridge commutation,are discussed and compared,which shows that the full-bridge commutation could better explore the potential of the back electro-motive forces(EMF),thus can deliver higher efficiency and smaller current ripple.The FOC braking is analyzed with the phasor diagrams.At a given motor speed,the motor turns from the regenerative braking mode into the plug braking mode if the braking torque exceeds a certain limit,which is proportional to the motor speed.Tests in the dynamometer show that a smooth control could be realized by FOC driving control and the highest efficiency and the smallest current ripple could be achieved by FOC braking control,compared to six-step commutation braking control.Therefore,FOC braking is selected as the braking control algorithm for electric vehicles.The proposed research ensures a good motor control performance while maintaining low cost and high reliability.
引用
收藏
页码:1 / 10
页数:10
相关论文
共 50 条
  • [21] Rule-Based Control of Battery External Heating for Electric Vehicle During Driving at Low Temperatures
    Zhang, Shupeng
    Shen, Wenjing
    IEEE ACCESS, 2021, 9 : 149360 - 149371
  • [22] VECTOR CONTROL BASED REGENERATIVE BRAKING FOR INDUCTION MOTOR DRIVEN BATTERY ELECTRIC VEHICLES
    Sudhakaran, V. V. Shimin
    Shah, Varsha A.
    Lokhande, Makarand M.
    INTERNATIONAL JOURNAL OF POWER AND ENERGY SYSTEMS, 2020, 40 (03): : 112 - 120
  • [23] Induction motor control for electric vehicle application using low resolution position sensor and sensorless vector control technique
    Guidi, G
    Kubota, H
    Hori, Y
    PROCEEDINGS OF THE POWER CONVERSION CONFERENCE - NAGAOKA 1997, VOLS I AND II, 1997, : 937 - 942
  • [24] Application of Low-Resolution Hall Position Sensor in Control and Position Estimation of PMSM-A Review
    Akrami, Milad
    Jamshidpour, Ehsan
    Baghli, Lotfi
    Frick, Vincent
    ENERGIES, 2024, 17 (17)
  • [25] Sliding mode control for driving and regenerative braking of electric vehicle based on RBF neural network
    Cao, Jian-Bo
    Cao, Bing-Gang
    Wang, Zhun-Ping
    Xu, Peng
    Wu, Xiao-Lan
    Jilin Daxue Xuebao (Gongxueban)/Journal of Jilin University (Engineering and Technology Edition), 2009, 39 (04): : 1019 - 1024
  • [26] Position linearisation scheme for permanent magnet synchronous motor drive of washing machine using low-resolution hall sensors
    Lee, D. M.
    Lim, D. C.
    Ahn, H. J.
    ELECTRONICS LETTERS, 2015, 51 (22) : 1765 - 1766
  • [27] Analysis of electromagnetic vibration of PM motor for electric vehicle based on vector control
    Hong J.-F.
    Wang S.-M.
    Sun X.-D.
    Sun Y.-G.
    Cao H.-X.
    Dianji yu Kongzhi Xuebao/Electric Machines and Control, 2021, 25 (06): : 1 - 9
  • [28] Study of YSC used for all Electric Independent Driving and Braking Electric Vehicle based on Fuzzy PI Control
    Yang Kun
    Wang Jie
    Tan Di
    Zhang Xueyi
    Guo Dong
    Liu Ruijun
    IFAC PAPERSONLINE, 2018, 51 (31): : 670 - 675
  • [29] Nonlinear time-frequency control of PM synchronous motor instability applicable to electric vehicle application
    Wang X.
    Suh C.S.
    International Journal of Dynamics and Control, 2016, 4 (4) : 400 - 412
  • [30] Research on composite braking control strategy of battery electric vehicle based on road surface recognition
    Liang, Cang
    Zheng, Zhu'An
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2024, 238 (04) : 788 - 801