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REAL TIME CALCULATION OF TIRE-ROAD FRICTION COEFFICIENT

机译:轮胎道路摩擦系数的实时计算

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Tire-road friction characteristics are essential elements of contemporary active safety systems and vehicle dynamics controls, such as anti-lock braking system (ABS) or stability control systems (SCS). The scope of this work is to devise a mathematical algorithm that in real time will be able to calculate the tire-road friction characteristics during each vehicle operating mode; decelerating, driving/accelerating and stationary/low-speed. The core of this algorithm is the calculation of the tire-road friction coefficient based on the measured wheel slip and the estimation of the wheel slip value that corresponds to the peak value of the tire-road adhesion coefficient curve and the rate of change of the wheel slip. The algorithm is divided in three fundamentals modes, using real time measurements, such as speed over ground and estimation parameters, such as the brake torque, rotational inertia etc. For the stationary/low speed mode the algorithm incorporates an appropriate tyre model and measurements of the steering wheel torque in order to calculate the wheel slip and the tire-road interaction characteristics. Overall, the aim of real time tire-road friction identification method is to be able to identify the current and the maximum value of the tire-road friction coefficient.
机译:轮胎道路摩擦特性是当代主动安全系统和车辆动力学控制的基本要素,如防锁制动系统(ABS)或稳定性控制系统(SCS)。这项工作的范围是设计一个数学算法,实时将能够在每种车辆操作模式期间计算轮胎道路摩擦特性;减速,驱动/加速和静止/低速。该算法的核心是基于测量的车轮滑动的轮胎道路摩擦系数的计算和轮滑值的估计对应于轮胎道路粘附系数曲线的峰值和变化速率轮滑。该算法以三种基本模式划分,使用实时测量,例如速度接地和估计参数,例如制动扭矩,旋转惯性等。算法算法包含适当的轮胎模型和测量方向盘扭矩以便计算车轮滑动和轮胎道路相互作用特性。总的来说,实时轮胎 - 道路摩擦识别方法的目的是能够识别轮胎道路摩擦系数的电流和最大值。

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