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Glance behaviours when using an in-vehicle smart driving aid : a real-world, on-road driving study

机译:使用车载智能驾驶辅助工具时的概览行为:真实世界的道路驾驶研究

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摘要

In-vehicle information systems (IVIS) are commonplace in modern vehicles, from the initial satellite navigation and in-car infotainment systems, to the more recent driving related Smartphone applications. Investigating how drivers interact with such systems when driving is key to understanding what factors need to be considered in order to minimise distraction and workload issues while maintaining the benefits they provide. This study investigates the glance behaviours of drivers, assessed from video data, when using a smart driving Smartphone application (providing both eco-driving and safety feedback in real-time) in an on-road study over an extended period of time. Findings presented in this paper show that using the in-vehicle smart driving aid during real-world driving resulted in the drivers spending an average of 4.3% of their time looking at the system, at an average of 0.43 s per glance, with no glances of greater than 2 s, and accounting for 11.3% of the total glances made. This allocation of visual resource could be considered to be taken from ‘spare’ glances, defined by this study as to the road, but off-centre. Importantly glances to the mirrors, driving equipment and to the centre of the road did not reduce with the introduction of the IVIS in comparison to a control condition. In conclusion an ergonomically designed in-vehicle smart driving system providing feedback to the driver via an integrated and adaptive interface does not lead to visual distraction, with the task being integrated into normal driving.
机译:车载信息系统(IVIS)在现代车辆中很常见,从最初的卫星导航和车载信息娱乐系统,到最新的与驾驶相关的Smartphone应用程序。调查驾驶员在驾驶时如何与此类系统交互是了解需要考虑哪些因素以最大程度地减少分散注意力和工作量问题,同时保持其提供的利益的关键。这项研究调查了在长时间的道路研究中使用智能驾驶智能手机应用程序(实时提供生态驾驶和安全反馈)时,根据视频数据评估的驾驶员的扫视行为。本文介绍的发现表明,在实际驾驶中使用车载智能驾驶辅助系统会使驾驶员平均花费4.3%的时间在看系统,平均每眼0.43 s。大于2秒,占总数的11.3%。可视资源的这种分配可以认为是从“备用”视线获得的,该视线是本研究针对道路而定义的,但偏心。重要的是,与IVIS相比,与控制条件相比,对后视镜,驾驶设备和道路中心的视线并没有减少。总而言之,根据人体工程学设计的车载智能驾驶系统通过集成的自适应界面向驾驶员提供反馈,不会导致视觉分散注意力,而该任务已集成到正常驾驶中。

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  • 年度 2014
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  • 正文语种 {"code":"en","name":"English","id":9}
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