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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Simultaneous optimal distribution of lateral and longitudinal tire forces for the model following control
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Simultaneous optimal distribution of lateral and longitudinal tire forces for the model following control

机译:控制后的模型同时具有横向和纵向轮胎力的最佳分布

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摘要

This paper presents a proposed optimum tire force distribution method in order to optimize tire usage and find out how the tires should share longitudinal and lateral forces to achieve a target vehicle response under the. assumption that all four wheels can be independently steered, driven, and braked. The inputs to the optimization process are the driver's commands (steering wheel angle, accelerator pedal pressure, and foot brake pressure), while the outputs are lateral and longitudinal forces on all four wheels. Lateral and longitudinal tire forces cannot be chosen arbitrarily, they have to satisfy certain specified equality constraints. The equality constraints are related to the required total longitudinal force, total lateral force, and total yaw moment. The total lateral force and total moment required are introduced,using the model responses of side-slip angle and yaw rate while the total longitudinal force is computed according to driver's command (traction or braking). A computer simulation of a closed-loop driver-vehicle system subjected to evasive lane change with braking is used to prove the significant effects of the proposed optimal tire force distribution method on improving the limit handling performance. The robustness of the vehicle motion with the proposed control against the coefficient of friction variation as well as the effect of steering wheel angle amplitude is discussed.
机译:本文提出了一种建议的最佳轮胎力分配方法,以优化轮胎使用率,并找出轮胎应如何共享纵向和横向力,以在此条件下实现目标车辆响应。假设所有四个车轮都可以独立操纵,驱动和制动。优化过程的输入是驾驶员的命令(方向盘角度,油门踏板压力和脚制动压力),而输出是所有四个车轮上的横向和纵向力。横向和纵向轮胎力不能任意选择,它们必须满足某些特定的相等约束。等式约束与所需的总纵向力,总横向力和总偏航力矩有关。利用侧滑角和偏航角速度的模型响应,引入了所需的总横向力和总力矩,而总纵向力则根据驾驶员的指令(牵引力或制动力)进行计算。通过闭环驾驶员车辆系统的计算机仿真,对带有制动的易变车道进行了仿真,以证明所提出的最佳轮胎力分配方法对改善极限操纵性能的显著作用。讨论了所提出的针对摩擦系数变化的控制的车辆运动的鲁棒性以及方向盘角度幅度的影响。

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