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Real-time estimation of tyre-road friction peak with optimal linear parameterisation

机译:最优线性参数对轮胎摩擦峰值的实时估计

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摘要

Spurred by the problem of identifying, in real-time, the adhesion levels between the tyre and the road, a practical, linear parameterisation (LP) model is proposed to represent the tyre friction. Towards that aim, results from the theory of function approximation, together with optimisation techniques, are explored to approximate the non-linear Burckhardt model with a new LP representation. It is shown that, compared with other approximations described in the literature, the proposed LP model is more efficient, that is, it requires a smaller number of parameters, and provides better approximation capabilities. Next, a modified version of the recursive least squares, subject to a set of equality constraints on parameters, is employed to identify the LP in real time. The inclusion of these constraints, arising from the parametric relationships present when the tyre is in free-rolling mode, reduces the variance of the parametric estimation and improves the convergence of the identification algorithm, particularly in situations with low tyre slips. The simulation results obtained with the full-vehicle CarSim model under different road adhesion conditions demonstrate the effectiveness of the proposed LP and the robustness of the friction peak estimation method. Furthermore, the experimental tests, performed with an electric vehicle under low-grip roads, provide further validation of the accuracy and potential of the estimation technique.
机译:在实时识别轮胎与道路之间的附着力水平的问题的刺激下,提出了一种实用的线性参数化(LP)模型来表示轮胎摩擦。为此,探索了函数逼近理论的结果以及优化技术,以一种新的LP表示来逼近非线性Burckhardt模型。结果表明,与文献中描述的其他近似方法相比,所提出的LP模型效率更高,也就是说,它需要较少的参数数量,并提供了更好的近似能力。接下来,采用受参数相等约束约束的递归最小二乘的修改版本,以实时识别LP。这些约束的产生是由于轮胎处于自由滚动模式时存在的参数关系而产生的,这些参数约束减小了参数估计的方差,并改善了识别算法的收敛性,尤其是在轮胎打滑较低的情况下。使用全车CarSim模型在不同路面附着条件下获得的仿真结果证明了所提出的LP的有效性以及摩擦峰值估算方法的鲁棒性。此外,在低抓地力的道路上用电动汽车进行的实验测试进一步验证了估算技术的准确性和潜力。

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