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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Handwheel Force Feedback for Lanekeeping Assistance: Combined Dynamics and Stability
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Handwheel Force Feedback for Lanekeeping Assistance: Combined Dynamics and Stability

机译:手轮力反馈,用于车道辅助:动态和稳定性相结合

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摘要

Lanekeeping assistance could save thousands of lives each year by maintaining lane position in the absence of driver steering commands. In order to work smoothly with the driver, handwheel force feedback must be an integral part of such a system. Here we combine force feedback with a lanekeeping controller based on lateral and heading error. In addition to force feedback replicating the feel in a conventional vehicle, the force can be based on the level of lanekeeping assistance being given. This coupling of the force feedback and assistance systems can destabilize the vehicle if not designed properly. Linear modeling verified by experiments shows the effect of varying the gains on both the force feedback and the lanekeeping assistance itself. In this analysis we show that within a range of values that feel reasonable to the driver, changes to the lanekeeping controller or force feedback can have marked effects on the response of the vehicle. It also shows that stability of the system can be ensured by injecting artificial damping or reproducing the on-center characteristics of a conventional vehicle. The analysis allows the force feedback designer to determine a range of stable force feedback gains, from which a set most acceptable to the driver can be chosen.
机译:通过在没有驾驶员转向命令的情况下保持车道位置,车道保持协助每年可以挽救数千人的生命。为了使驾驶员平稳工作,手轮力反馈必须是该系统不可或缺的一部分。在这里,我们将力反馈与基于横向和航向误差的车道保持控制器相结合。除了力反馈能够复制传统车辆的感觉外,力还可以基于所提供的车道保持辅助水平。如果设计不当,力反馈和辅助系统的这种耦合会破坏车辆的稳定性。通过实验验证的线性模型显示了改变增益对力反馈和车道保持辅助系统本身的影响。在此分析中,我们表明,在驾驶员感觉合理的值范围内,对车道保持控制器或力反馈的更改可能会对车辆的响应产生明显影响。它还表明,可以通过注入人工阻尼或再现传统车辆的对中特性来确保系统的稳定性。该分析使力反馈设计者可以确定一系列稳定的力反馈增益,从中可以选择驾驶员最可接受的一组参数。

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