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BotMap: Non-Visual Panning and Zooming with an Actuated Tabletop Tangible Interface

机译:BotMap:非可视的平移和缩放,并带有可操作的桌面有形界面

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The development of novel shape-changing or actuated tabletop tangible interfaces opens new perspectives for the design of physical and dynamic maps, especially for visually impaired (VI) users. Such maps would allow non-visual haptic exploration with advanced functions, such as panning and zooming. In this study, we designed an actuated tangible tabletop interface, called BotMap, allowing the exploration of geographic data through non-visual panning and zooming. In BotMap, small robots represent landmarks and move to their correct position whenever the map is refreshed. Users can interact with the robots to retrieve the names of the landmarks they represent. We designed two interfaces, named Keyboard and Sliders, which enable users to pan and zoom. Two evaluations were conducted with, respectively, ten blindfolded and eight VI participants. Results show that both interfaces were usable, with a slight advantage for the Keyboard interface in terms of navigation performance and map comprehension, and that, even when many panning and zooming operations were required, VI participants were able to understand the maps. Most participants managed to accurately reconstruct maps after exploration. Finally, we observed three VI people using the system and performing a classical task consisting in finding the more appropriate itinerary for a journey.
机译:新颖的可变形或可启动的桌面有形界面的开发为物理和动态地图的设计开辟了新的视角,特别是对于视障(VI)用户。这样的地图将允许具有平移和缩放等高级功能的非视觉触觉探索。在本研究中,我们设计了一个称为BotMap的可激活有形桌面界面,该界面允许通过非可视平移和缩放来探索地理数据。在BotMap中,每当刷新地图时,小型机器人就会表示地标,并移动到其正确位置。用户可以与机器人进行交互以检索他们所代表的地标的名称。我们设计了两个界面,分别称为键盘和滑块,使用户可以平移和缩放。分别对十名蒙着眼睛的参与者和八名VI参与者进行了两次评估。结果表明这两个界面都可以使用,在导航性能和地图理解方面,键盘界面略有优势,并且,即使需要进行许多平移和缩放操作,VI参与者也可以理解地图。大多数参与者在探索后设法准确地重建了地图。最后,我们观察了三个使用此系统的VI人员,并执行了一项经典任务,即找到更适合旅行的路线。

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