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Effect of strength and direction of haptic cueing on steering control during near lane departure

机译:接近车道偏离时触觉提示的强度和方向对转向控制的影响

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The present study compared two distinct approaches to designing driving assistance devices. These devices aim to facilitate steering responses by delivering directional pulses on the steering wheel when lane departure is imminent. In one case, the aim is to prime the corrective gesture through a haptic cue in the direction of the lane centre (motor priming). The other approach consists of eliciting a compensatory reflex reaction by means of a jerk of the steering wheel in the opposite direction. Central to this investigation are the safety benefits of the devices and the ability of drivers to remain in full control of their steering responses. The steering behaviour of 18 participants during near lane departure in bends and in straight lines was analysed. The strength and direction of haptic cueing was manipulated. The results show that drivers were always able to control the direction of the steering response when the haptic cue was delivered. No reflex counteraction was observed, whatever the strength or the direction of the stimulus. The fastest responses were observed when the cue was directed toward lane departure, especially when cueing was strong. However, these did not necessarily lead to the fastest returns to a safe position in the lane when compared with motor priming toward the lane centre. The latter yielded improved manoeuvre execution as soon as the steering movement was initiated. These results are discussed in relation to the sensorimotor and cognitive processes involved in steering behaviour. Their implications for the design of haptic-based lane departure warning systems are considered.
机译:本研究比较了两种不同的设计驾驶辅助设备的方法。这些设备旨在在即将发生车道偏离时通过在方向盘上传递方向性脉冲来促进转向响应。在一种情况下,目的是通过触觉提示在车道中心方向上启动纠正手势(运动启动)。另一种方法包括通过方向盘的颠簸引起相反方向的补偿性反射反应。该研究的重点是设备的安全性以及驾驶员完全控制其转向响应的能力。分析了18名参与者在弯道和直线附近车道偏离时的转向行为。触觉提示的强度和方向得到了控制。结果表明,在提供触觉提示时,驾驶员始终能够控制转向响应的方向。无论刺激的强度或方向如何,均未观察到反射反作用。当提示指向车道偏离时,观察到最快的响应,尤其是提示强烈时。但是,与向车道中心注水时相比,这些并不一定会导致最快返回车道中的安全位置。转向运动一开始,后者就改善了操纵执行力。这些结果与转向行为涉及的感觉运动和认知过程有关。考虑了它们对基于触觉的车道偏离警告系统设计的影响。

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