首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Coaxial-coupling traction control for a four-wheel-independent-drive electric vehicle on a complex road
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Coaxial-coupling traction control for a four-wheel-independent-drive electric vehicle on a complex road

机译:复杂道路上四轮独立驱动电动汽车的同轴耦合牵引力控制

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摘要

An independent-wheel-drive electric vehicle has the advantage of better implementation of precise motion and stability control. However, when the vehicle is moving on a road that has complex slopes and various adhesion coefficients and is subjected to the structural limitations of the independent-wheel-drive systems, the driving performance will deteriorate. In order to make full use of the drive torque of every motor to improve the vehicle's climbing and accelerating abilities, on the basis of the designs of a dual-motor coaxial-coupling independent-wheel-drive system and a sliding-mode controller, a coaxial-coupling traction control system was developed. Simulations on coaxial-coupling traction control for a four-wheel-independent-drive electric vehicle were completed. With the innovative coaxial-coupling equipment, the drive torque can be satisfactorily transferred between the wheels at the two sides of one drive shaft. When one of the driving wheels begins to slip, the torque transmission will increase rapidly, the probability that wheel slipping occurs will be reduced and the vehicle's driving force can be enhanced. Also, the chatter of the traction control system can be quietened effectively, and the dynamicity and trafficability can be improved. In addition, with the additional yaw moment generated by the torque coupling, the system also has the auxiliary effect of improving the high-velocity lateral stability of the vehicle on a road which has a low adhesion coefficient.
机译:独立轮驱动电动汽车的优点是更好地实现了精确的运动和稳定性控制。然而,当车辆在具有复杂的坡度和各种附着系数的道路上行驶并且受到独立轮驱动系统的结构限制时,驾驶性能将恶化。为了充分利用每个电动机的驱动扭矩来提高车辆的爬坡和加速能力,在双电动机同轴耦合独立轮驱动系统和滑模控制器的设计基础上,开发了同轴耦合牵引力控制系统。完成了四轮独立驱动电动汽车的同轴耦合牵引力控制仿真。使用创新的同轴耦合设备,可以在一个驱动轴两侧的车轮之间令人满意地传递驱动扭矩。当驱动轮之一开始打滑时,扭矩传递将迅速增加,车轮打滑发生的可能性将减小,并且车辆的驱动力可以增强。而且,可以有效地使牵引力控制系统的颤振静音,并且可以改善动态性和可通行性。此外,通过扭矩耦合产生的额外横摆力矩,该系统还具有改善车辆在附着系数较低的道路上的高速横向稳定性的辅助作用。

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