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首页> 外文期刊>IEEE Transactions on Vehicular Technology >All-Wheel Braking Force Allocation During a Braking-in-Turn Maneuver for Vehicles With the Brake-by-Wire System Considering Braking Efficiency and Stability
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All-Wheel Braking Force Allocation During a Braking-in-Turn Maneuver for Vehicles With the Brake-by-Wire System Considering Braking Efficiency and Stability

机译:考虑到制动效率和稳定性的线控制动系统的车辆在转弯制动过程中的全轮制动力分配

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摘要

A novel method of all-wheel braking force allocation during a braking-in-turn maneuver is proposed for vehicles with the brake-by-wire (BBW) system. The concept of stability priority is applied in distributing the braking force to each wheel, which means that the stability performance has priority over the braking demand during a braking-in-turn maneuver. Based on this principle, I-curves for braking-in-turn maneuvers with respect to three parameters are developed using the graphics of a single-track vehicle model, defining the force allocation between the front and rear axles. Then, the distributed braking force of the front and rear axles is allocated between the inner and outer wheels based on the load transfer. The simulation and hardware-in-the-loop (HIL) experimental results show that the proposed allocation strategy makes good use of adhesion and ensures vehicle stability during a braking-in-turn maneuver. The proposed method provides theoretical guidelines on independent braking force control in the BBW system, which enhances vehicle stability and braking performance.
机译:提出了一种针对具有线控制动(BBW)系统的车辆在转弯制动操纵期间全轮制动力分配的新方法。在将制动力分配给每个车轮时应用了稳定性优先级的概念,这意味着在转弯制动操作期间,稳定性能的优先级高于制动需求。基于此原理,使用单轨车辆模型的图形开发了用于三个参数的转弯制动I型曲线,定义了前后轴之间的力分配。然后,基于载荷传递在前后轮之间分配前轮和后轮的分配制动力。仿真和半实物(HIL)实验结果表明,所提出的分配策略充分利用了附着力,并确保了转弯制动操作期间的车辆稳定性。所提出的方法为BBW系统中的独立制动力控制提供了理论指导,从而增强了车辆的稳定性和制动性能。

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