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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Vehicle stability enhancement - an adaptive optimal approach to the distribution of tyre forces
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Vehicle stability enhancement - an adaptive optimal approach to the distribution of tyre forces

机译:车辆稳定性增强-轮胎力分配的自适应最佳方法

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摘要

In this paper, vehicle stability enhancement, based on the integrated vehicle control notion, is presented. A new method for adaptive optimal distribution of braking and lateral tyre forces is employed. The control inputs considered are the individual wheel steering and braking for each wheel. Since a unique set of tyre forces satisfying control objectives cannot be easily determined, an adaptive optimization problem subjected to two equality and four inequality constraints has been solved to achieve an optimal solution. A proper adaptation mechanism is suggested to minimize the negative effects of direct yaw moment control, such as the undesirable decrease in the total speed of the vehicle. The effectiveness of the proposed vehicle stability enhancement system, especially online balancing of tyre forces in an optimal form with and without an adaptation mechanism, is demonstrated through digital simulations. A comprehensive non-linear vehicle dynamics model is utilized for simulation purposes. The results indicate that the proposed control system can effectively utilize the tyres' frictional forces and significantly improve the vehicle stability and handling performances.
机译:本文提出了基于集成车辆控制概念的车辆稳定性增强系统。采用了一种新的方法来自适应地优化制动和轮胎横向力。考虑的控制输入是每个车轮的单独车轮转向和制动。由于不能轻易确定满足控制目标的唯一轮胎力组,因此解决了受到两个等式和四个不等式约束的自适应优化问题,以实现最佳解决方案。建议适当的适应机制以最小化直接横摆力矩控制的负面影响,例如不希望的车辆总速度的降低。通过数字仿真证明了所提出的车辆稳定性增强系统的有效性,尤其是具有和不具有自适应机制的最优形式的轮胎力的在线平衡。综合的非线性车辆动力学模型用于仿真目的。结果表明,所提出的控制系统可以有效地利用轮胎的摩擦力,并显着提高车辆的稳定性和操纵性能。

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