论文标题

在不平坦的道路表面上驾驶的机架力量估算

Rack Force Estimation for Driving on Uneven Road Surfaces

论文作者

Bhardwaj, Akshay, Slavin, Daniel, Walsh, John, Freudenberg, James, Gillespie, R. Brent

论文摘要

从前轮胎和将杆绑到车辆的转向架(称为架子力)的部队显着影响驾驶员在方向盘上经历的扭矩。结果,在各种高级驾驶员辅助系统中使用了机架力的估计值。现有的产生机架力估计的方法要么容易受到转向系统干扰的影响,要么仅适用于在频率较低的道路上驾驶(例如道路斜率)。在本文中,我们提出了一个模型,该模型还可以在具有高频剖面变化的道路上驾驶的无干扰机架力量估算,例如道路防滑钉和坑洼,除了具有低频轮廓变化的道路。我们通过在具有已知低频和高频道路剖面变化的测试轨道上进行的两个驾驶实验的结果来验证模型的估计精度。我们通过将各种估计值与使用安装在测试工具中的传感器获得的机架力量测量进行比较,进一步证明了模型相对于现有模型的优点。

The force transmitted from the front tires and tie rods to the steering rack of a vehicle, called the rack force, significantly influences the torque experienced by a driver at the steering wheel. As a result, estimates of rack force are used in a wide variety of advanced driver assist systems. Existing methods for producing rack force estimates are either susceptible to steering system disturbances or are only applicable for driving on roads with low frequency profile variations such as road slopes. In this paper we present a model that can produce disturbance-free rack force estimates for driving on roads with high frequency profile variations, such as road cleats and potholes, in addition to roads with low frequency profile variations. We validate the estimation accuracy of our model by presenting results from two driving experiments that were performed on test tracks with known low and high frequency road profile variations. We further demonstrate the merits of our model relative to the existing models by comparing the various estimates to rack force measurements obtained using a sensor mounted in the test vehicle.

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