Slip-Clutch Torque Estimation via Real-Time Adaptive Lookup Table

Wenpeng Wei, Hussein Dourra, G. Zhu
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引用次数: 1

Abstract

Transfer case clutch is crucial in determining traction torque distribution between front and rear tires for four-wheel-drive (4WD) vehicles. Estimating time-varying clutch surface friction coefficient is critical for traction torque control since it is proportional to the clutch output torque. As a result, this paper proposes a real-time adaptive lookup table strategy to provide the time-varying clutch surface friction coefficient. Specifically, the clutch-parameter-dependent (such as clutch output torque and clutch touchpoint distance) friction coefficient is first estimated with available low-cost vehicle sensors (such as wheel speed and vehicle acceleration); and then a clutch-parameter-independent approach is developed for clutch friction coefficient through a one-dimensional lookup table. The table nodes are adaptively updated based on a fast recursive least-squares (RLS) algorithm. Furthermore, the effectiveness of adaptive lookup table is demonstrated by comparing the estimated clutch torque from adaptive lookup table with that estimated from vehicle dynamics, which achieves 14.8 Nm absolute mean squared error (AMSE) and 2.66% relative mean squared error (RMSE).
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滑移离合器扭矩估计通过实时自适应查找表
对于四轮驱动(4WD)汽车来说,变速箱离合器是决定前后轮胎间牵引力扭矩分配的关键。估计时变离合器表面摩擦系数对牵引力转矩控制至关重要,因为它与离合器输出转矩成正比。因此,本文提出了一种实时自适应查找表策略来提供时变离合器表面摩擦系数。具体来说,离合器参数相关的摩擦系数(如离合器输出扭矩和离合器接触点距离)首先用可用的低成本车辆传感器(如车轮速度和车辆加速度)估计;然后通过一维查找表建立了离合器摩擦系数与离合器参数无关的求解方法。基于快速递归最小二乘(RLS)算法自适应更新表节点。此外,通过将自适应查找表估计的离合器扭矩与车辆动力学估计的扭矩进行比较,证明了自适应查找表的有效性,绝对均方误差(AMSE)达到14.8 Nm,相对均方误差(RMSE)达到2.66%。
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