磁铁
离合器
扭矩
混蛋
传输(电信)
联轴节(管道)
MATLAB语言
机械传动装置
刚度
磁性齿轮
功率(物理)
动力传输
振动
汽车工程
控制理论(社会学)
计算机科学
工程类
电气工程
机械工程
物理
声学
结构工程
机械系统
加速度
人工智能
量子力学
控制(管理)
操作系统
热力学
经典力学
作者
Junliang Du,Dawei Liu,Tingzhi Ren
标识
DOI:10.1177/09544070231221307
摘要
Jerk during shift in mechanical two-speed transmissions often have a serious impact on driving comfort. Within this paper, a proposed two-speed permanent magnet transmission is presented for low-speed electric vehicles, which utilizes magnetic non-contact transmission. This transmission is composed of a magnetic drive mechanism, a clutch, and a selectable one-way clutch. Then, a mathematical model is established for the magnetic-machine composite transmission based on the principles of magnetic field modulation and the concentrated parameter method. Additionally, a shift method that operates without power interruption is presented. Finally, the process of shifting is simulated for permanent magnet drive systems with varying magnetic coupling stiffness in a MATLAB/Simulink environment. The resulting torque calculations are compared with those obtained from the commercial software Maxwell. Simulation results indicate that the two-speed permanent magnet transmission does not experience power interruption during upshifting. Less jerk when shifting gears. Low magnetic coupling stiffness can reduce high-frequency vibration and enhance shift comfort. The findings from the torque calculations obtained through the proposed model align with those obtained from the commercial software Maxwell.
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