Adaptive Fault-Tolerant Control During the Mode Switching for Electric Vehicle Dual-Mode Coupling Drive System

被引:0
作者
Bingnan Qi
Liuquan Yang
Lipeng Zhang
Runsheng Zhang
机构
[1] Engineering Training Center,Hebei Key Laboratory of Special Delivery Equipment
[2] Yanshan University,School of Vehicle and Energy
[3] Yanshan University,undefined
[4] Yanshan University,undefined
来源
Automotive Innovation | 2021年 / 4卷
关键词
Electric vehicle; Dual-mode coupling drive system; Mode-switching control; Kalman filtering; Sensor fault-tolerant control;
D O I
暂无
中图分类号
学科分类号
摘要
As a new drive system for electric vehicles, the dual-mode coupling drive system can automatically switch between centralized and distributed drive modes and realize two-speed gear shifting. Because the actuator’s displacement signal affects the mode-switching control, when failure occurs at the angle-displacement sensor, the mode-shifting quality is likely to drop greatly, even possibly leading to shift failure. To address the angle-displacement sensor failure and improve the reliability of the shift control, an adaptive fault-tolerant control method is proposed and verified. First, the effect of the output signal of the angle-displacement sensor in the mode-switching control process is analyzed. Then, an adaptive mode-switching fault-tolerant control method is designed based on the Kalman filter and fuzzy theory. Finally, the feasibility of the control effect is verified through simulations and vehicle experiments. The results indicate that the proposed method can effectively eliminate the signal noise of the angle-displacement sensor and successfully switch the modes when the sensor fails. It provides a reference for ensuring the working quality of similar electric drive systems under sensor failures.
引用
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页码:56 / 69
页数:13
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  • [1] Ouyang MG(2016)China’s new energy vehicle research and development and outlook Sci. Technol. Rev. 34 13-20
  • [2] Wan G(2016)Ideas for “the thirteenth five-year plan” of electric vehicle development Auto Rev. 5 39-40
  • [3] Zhang LP(2018)Rollover prevention control for a four in-wheel motors drive electric vehicle on an uneven road Sci. China 61 148-162
  • [4] Li L(2013)Advances in the study of automotive dynamic stability control Chin. J. Mech. Eng. 49 95-107
  • [5] Qi BN(2015)Design of adaptive sliding mode controller for robust yaw stabilization of in-wheel-motor-driven electric vehicles Int. J. Veh. Des. 67 98-113
  • [6] Li L(2018)Coordination control of differential drive assist steering and vehicle stability control for four-wheel-independent-drive EV IEEE Trans. Veh. Technol. 67 11453-11467
  • [7] Jia G(2012)Innovation by in-wheel-motor drive unit Vehicle Syst. Dyn. 50 807-830
  • [8] Song J(2012)Dynamics of front-and-rear-wheel-independent-drive-type electric vehicles at the time of failure IEEE Trans. Ind. Electron. 59 1488-1499
  • [9] Ran X(2018)Method for suppressing variable-mode impact of dual-mode coupling drive system of electric vehicle Chin. J. Mech. Eng. 54 165-176
  • [10] Nam K(2001)A systems modelling and simulation approach to gear shift effort analysis Int. J. Veh. Des. 25 317-338