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Outdoor pedestrian navigation assistance with a shape-changing haptic interface and comparison with a vibrotactile device

机译:具有变形触觉界面的户外行人导航辅助功能,以及与触觉设备的比较

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By targeting haptic sensory channels when walking, pedestrian navigation systems (as found in smartphone apps) have the potential to allow both visually impaired and sighted users to pay greater attention to their surroundings, compared to typical audio or visual based feedback. In line with this idea, we have proposed mechanotactile shape-changing interfaces as an alternative to the more commonly used haptic modality of vibrotactile feedback. In this paper, we evaluate the potential for haptic guidance in a realistic outdoor navigation task. Participants were guided along pre-determined footpath routes in a ???3,500m2 outdoor public environment, via ???equivalent??? handheld shape-changing and vibrotactile feedback devices, capable of providing heading and proximity information. Localization was based on real-time GPS data provided by a smartphone. Many other pedestrians (not part of the study) shared the space and had to be avoided, as in typical urban settings. All participants located all waypoints with both devices, walking between 270m???600m per trial. Walking efficiency was similar for both devices, though participants took over twice as long (on average) to complete the routes with the vibrotactile device. In a questionnaire, participants preferred the shape-changing interface, considering it more intuitive and pleasant to use than the vibrotactile system. Though haptics can certainly be used for practical navigation, the relatively low resolution of unprocessed GPS positioning can lead to erroneous instructions that are harder for a (sighted) user to notice and correct than in screen based systems utilizing visual maps.
机译:通过瞄准触觉感官渠道行走时,行人导航系统(如智能手机应用中的发现)有可能允许视觉损害和视力用户在与典型的音频或视觉基于反馈相比上更加关注周围环境。符合这个想法,我们已经提出了机械形状改变的界面,作为更常用的振动反馈触觉模型的替代方案。在本文中,我们评估了现实户外导航任务中触觉指导的潜力。参与者沿着预先确定的人行道路线引导3,500M2户外公共环境,通过???等效???手持式形状更换和振动反馈设备,能够提供标题和接近信息。本地化基于智能手机提供的实时GPS数据。许多其他行人(不是本研究的一部分)分享了该空间,必须避免,如典型的城市环境中。所有参与者都位于两个设备的所有航点,每次试验中均在270米之间行走600米。两种设备的步行效率相似,但参与者超过两倍长(平均)以完成带有振动装置的路线。在调查问卷中,参与者首选变形界面,考虑到使用比振动触觉系统更直观和令人愉悦。虽然触觉肯定可以用于实际导航,但是,未加工的GPS定位的相对较低的分辨率可能导致错误的指令,这些指令更难以用于(视域)用户,而不是利用可视地图的基于屏幕的系统。

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