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The Effect of a Haptic Guidance Steering System on Fatigue-Related Driver Behavior

机译:触觉引导系统对疲劳相关驾驶员行为的影响

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Prolonged driving on monotonous roads often leads to a reduction in task load that causes drivers passive fatigue. Passive fatigue results in loss of driver alertness and is detrimental to driver safety. This paper focuses on the effect of a haptic guidance steering system on improving behaviors of passively fatigued drivers. By continuously exerting active torque on a steering wheel, the haptic system guides drivers to follow the centerline of a lane; meanwhile, the drivers sense the torque and interact with it while operating the steering wheel. An experiment was conducted with 12 healthy participants in a high-fidelity driving simulator. A monotonous driving course was designed, and vehicle speed was fixed in order to induce drivers’ passive fatigue. A treatment session was arranged with the haptic guidance steering system, and a control session was conducted as a comparison. Driving performance, assessed by standard deviation of lane position, mean absolute lateral error, and time-to-lane crossing, was significantly improved when haptic guidance was activated. Results of physiological measures, including heart rate variability and percentage of eye closure, revealed that passively fatigued drivers were aroused when they were aware of the active torque on the steering wheel. In conclusion, the activation of haptic guidance can be regarded as an effective countermeasure for the passively fatigued drivers who have performed a prolonged monotonous driving task.
机译:在单调的道路上长时间驾驶通常会导致任务负荷减少,从而导致驾驶员被动疲劳。被动疲劳会导致驾驶员失去警觉,并且不利于驾驶员安全。本文重点研究了触觉指导转向系统对改善被动疲劳驾驶员行为的影响。通过在方向盘上持续施加主动扭矩,触觉系统引导驾驶员跟随车道的中心线;同时,驾驶员在操作方向盘时会感应到扭矩并与之交互。在高保真驾驶模拟器中对12位健康参与者进行了实验。设计了单调的行驶路线,并确定了车速,以引起驾驶员的被动疲劳。通过触觉引导转向系统安排了治疗会议,并进行了控制会议作为比较。激活触觉诱导后,通过车道位置,平均绝对横向误差和穿越车道时间的标准偏差评估的驾驶性能得到了显着改善。包括心率变异性和闭眼百分比在内的生理测量结果表明,当被动疲劳的驾驶员意识到方向盘上的主动扭矩时,就会引起他们的疲劳。总之,对于执行长时间单调驾驶任务的被动疲劳驾驶者,可以将触觉引导的激活视为有效的对策。

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