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Human-centered Steer-by-Wire design: Steering wheel dynamics should be task dependent

机译:以人为中心的线控转向设计:方向盘动力学应取决于任务

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Steer-by-Wire (SbW) systems currently under development by the automotive industry offer interesting new approaches to designing driver-steering wheel interactions. The traditional, emerging dynamics in mechanically linked steering systems can be re-designed with SbW to improve or even extend the steering ‘feel’. In this article we manipulated the steering wheel dynamics such that each design was expected to yield the best driving performance with the least amount of driver control effort for a particular driving task. We tested three designs during three different driving tasks in a fixed-base driving simulator. The results of the experiment showed that steering wheel dynamics should be stiff and sluggish for driving on straight roads and slack and light for curve negotiation. Future experiments will investigate the implications for drivers on a neuromuscular level.
机译:汽车行业当前正在开发的线控转向(SbW)系统为设计驾驶员与方向盘的相互作用提供了有趣的新方法。机械联动转向系统中传统的新兴动力可以通过SbW进行重新设计,以改善甚至扩展转向的“感觉”。在本文中,我们操纵了方向盘动力学特性,以使每种设计都可以在实现最佳驾驶性能的同时,以最小的驾驶员控制力完成特定的驾驶任务。我们在固定基座的驾驶模拟器中测试了三种设计,用于三种不同的驾驶任务。实验结果表明,在直路上行驶时,方向盘动力学应该刚性而缓慢,而在弯道协商时则要松弛和轻盈。未来的实验将在神经肌肉水平上研究对驾驶员的影响。

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