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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Effect of Load-Dependent Friction on the Estimation of Rack Force in Electric Power-Assisted Steering System
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Effect of Load-Dependent Friction on the Estimation of Rack Force in Electric Power-Assisted Steering System

机译:载荷依赖性摩擦对电力辅助转向系统齿轮架估计的影响

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摘要

The rack force is valuable information for a vehicle dynamics control system, as it relates closely to the road conditions and steering feel. Since there is no direct measurement of rack force in current steering systems, various rack force estimation methods have been proposed to obtain the rack force information. In order to get an accurate rack force estimate, it is important to have knowledge of the steering system friction. However, it is hard to have an accurate value of friction, as it is subject to variation due to operation conditions and material wear. Especially for the widely used column-assisted electric power steering (C-EPAS) system, the load-dependent characteristic of its worm gear friction has a significant effect on rack force estimation. In this paper, a rack force estimation method using a Kalman filter and a load-dependent friction estimation algorithm is introduced, and the effect of C-EPAS friction on rack force estimator performance is investigated. Unlike other rack force estimation methods, which assume that friction is known a priori, the proposed system uses a load-dependent friction estimation algorithm to determine accurate friction information in the steering system, and then a rack force is estimated using the relationship between steering torque and angle. The effectiveness of this proposed method is verified by CARSIM/SIMULINK cosimulation.
机译:机架力是车辆动态控制系统的有价值的信息,因为它与道路状况和转向感相关。由于在当前转向系统中没有直接测量机架力,因此已经提出了各种机架力估计方法来获得机架力信息。为了获得准确的机架力估计,重要的是要知道转向系统摩擦。然而,很难具有摩擦的准确值,因为由于操作条件和材料磨损导致的变化。特别是对于广泛使用的柱辅助电动驾驶转向(C-EPA)系统,其蜗轮摩擦的载荷依赖性特性对机架力估计具有显着影响。本文介绍了使用卡尔曼滤波器的机架力估计方法和依赖于载荷摩擦估计算法,研究了C-EPAS摩擦对机架力估计器性能的影响。与其他机架力估计方法不同,该机架力估计方法是已知摩擦的先验,所提出的系统使用负载相关的摩擦估计算法来确定转向系统中的准确摩擦信息,然后使用转向扭矩之间的关系估计机架力和角度。通过Carsim / Simulink Cosimulation验证了这种方法的有效性。

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