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改善后轮独立驱动汽车过弯效率的转矩分配控制
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Torque Vectoring Control of Rear-Wheel-Independent-Drive Vehicle for Cornering Efficiency Improvement
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    摘要:

    针对分布驱动式电动汽车在转矩分配上较少研究转矩横向分配对驱动车轮滑转率的抑制作用及其对过弯性能的改善这一问题,利用其各轮转矩独立可控的性能优势,提出了一种基于轮胎纵向刚度估计和最佳滑转率识别的转矩定向分配控制方法,以降低驱动轴平均滑转率. 根据轮胎与路面的简化附着特性,理论上分析了转矩定向分配能够降低轴平均滑转率的原因. 采用递归最小二乘法(RLS)设计了轮胎纵向刚度估算器,并基于已估算的轮胎纵向刚度,以及在线识别的车轮的最佳滑转率制定了转矩定向分配控制策略. 仿真试验结果表明,提出的转矩定向分配控制策略可以有效地减小驱动轴的平均滑转率10%以上,而且还能够减小过弯时驾驶员的方向盘转角输入约14%,实现了提高过弯效率和改善转向机动性的双重目的.

    Abstract:

    For distributed drive electric vehicles,less attention is paid to the inhibition of lateral torque distribution on wheel slip ratio and its improvement on cornering performance. To solve this problem,taking the advantage of the independently controllable torque,a torque vectoring control method based on tire longitudinal stiffness estimation and optimal slip ratio identification was proposed to reduce the average slip ratio of the driving-axle. According to the simplified adhesion characteristics of the tire and the road,the impact of torque vectoring on the average slip ratio of the driving-axle was theoretically analyzed. An estimator based on Recursive Least Square method(RLS) was designed to estimate the tire longitudinal stiffness in real time. On the basis of the estimated tire longitudinal stiffness and identified optimal slip ratio,an torque vectoring control method was developed. The simulation results show that,the proposed torque vectoring control method not only can obviously decrease the average slip ratio of the driving-axle by more than 10%,but also can reduce the steering wheel angle input by about 14%,which achieves the dual purpose including the improvement of cornering efficiency and the enhancement of steering maneuverability.

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王军年,于田雨 ,孙娜娜,付铁军?覮.改善后轮独立驱动汽车过弯效率的转矩分配控制[J].湖南大学学报:自然科学版,2020,47(12):9~17

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  • 在线发布日期: 2021-01-14
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