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Tire-road friction coefficient and tire cornering stiffness estimation based on longitudinal tire force difference generation

机译:基于纵向轮胎力差产生的轮胎-道路摩擦系数和转弯刚度估算

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摘要

A sequential tire cornering stiffness coefficient and tire-road friction coefficient (TRFC) estimation method is proposed for some advanced vehicle architectures, such as the four-wheel independently-actuated (FWIA) electric vehicles, where longitudinal tire force difference between the left and right sides of the vehicle can be easily generated. Such a tire force difference can affect the vehicle yaw motion, and can be utilized to estimate the tire cornering stiffness coefficient and TRFC. The proposed tire cornering stiffness coefficient and TRFC identification method has the potential of estimating these parameters without affecting the vehicle desired motion control and trajectory tracking objectives. Simulation and experimental results with a FWIA electric vehicle show the effectiveness of the proposed estimation method.
机译:针对一些先进的车辆架构,例如四轮独立驱动(FWIA)电动汽车,提出了一种顺序轮胎转弯刚度系数和轮胎-道路摩擦系数(TRFC)估计方法,其中左右轮胎之间的纵向轮胎力差车辆侧面很容易产生。这样的轮胎力差异会影响车辆的偏航运动,并且可用于估计轮胎转弯刚度系数和TRFC。提出的轮胎转弯刚度系数和TRFC识别方法具有估算这些参数的潜力,而不会影响车辆所需的运动控制和轨迹跟踪目标。 FWIA电动汽车的仿真和实验结果表明了所提出的估算方法的有效性。

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