论文标题

触觉共享控制幻影交通拥堵的控制

Haptic Shared Control for Dissipating Phantom Traffic Jams

论文作者

Koerten, Klaas, Abbink, David, Zgonnikov, Arkady

论文摘要

高速公路上发生的交通拥堵导致旅行时间增加,并增加了燃油消耗和碰撞。没有明确原因的交通拥堵,例如坡道或事故,称为幻影交通拥堵,据说占所有交通拥堵的50%。它们是由人类驾驶行为引起的不稳定交通流量的结果。自动化流量中所有汽车中只有5%的纵向车辆运动可以消散幻影交通拥堵。但是,当人驾驶员需要从自动化中接管控制时,驾驶自动化会引入安全问题。我们调查了使用触觉共享控制是否可以溶解幻影交通拥堵。这使人类处于循环状态,从而绕开了人类接管控制能力有限的问题,同时受益于自动化的大多数优势。在与24个驾驶模拟器参与者的实验中,我们测试了触觉共享控制对交通流动动力学的影响,并将其与手动控制和完全自动化进行了比较。我们还研究了两种控制类型对模拟无声自动化失败期间参与者行为的影响。结果表明,触觉共享控制可以帮助耗散幻影交通堵塞比完全手动控制更好,但比完全自动化更糟。我们还发现,与完全自动化相比,触觉共享控制减少了由无声自动化失败引起的不安全情况的发生。我们的结果表明,触觉共享控制可以消除幻影交通拥堵,同时防止与完全自动化相关的安全风险。

Traffic jams occurring on highways cause increased travel time as well as increased fuel consumption and collisions. Traffic jams without a clear cause, such as an on-ramp or an accident, are called phantom traffic jams and are said to make up 50% of all traffic jams. They are the result of an unstable traffic flow caused by human driving behavior. Automating the longitudinal vehicle motion of only 5% of all cars in the flow can dissipate phantom traffic jams. However, driving automation introduces safety issues when human drivers need to take over the control from the automation. We investigated whether phantom traffic jams can be dissolved using haptic shared control. This keeps humans in the loop and thus bypasses the problem of humans' limited capacity to take over control, while benefiting from most advantages of automation. In an experiment with 24 participants in a driving simulator, we tested the effect of haptic shared control on the dynamics of traffic flow, and compared it with manual control and full automation. We also investigated the effect of two control types on participants' behavior during simulated silent automation failures. Results show that haptic shared control can help dissipating phantom traffic jams better than fully manual control but worse than full automation. We also found that haptic shared control reduces the occurrence of unsafe situations caused by silent automation failures compared to full automation. Our results suggest that haptic shared control can dissipate phantom traffic jams while preventing safety risks associated with full automation.

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