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Toward Non-visual Graphics Representations on Vibratory Touchscreens: Shape Exploration and Identification

机译:走向振动触摸屏上的非可视图形表示:形状探索和识别

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Considerable advancements in vibratory and auditory feedback have transformed the touchscreen from a simple visual input/output device to one that is highly interactive and multimodal. While auditory feedback is useful in tasks where dictation is sufficient, it can be tedious and limited in tasks that require interpretation of graphics. In this work, we focus on exploration procedures, identification accuracy of graphics, and how repetition at smaller scales may help users identify similar graphics when only vibratory feedback is used on touchscreens. We conducted shape identification tasks with 56 blindfolded participants. Results suggest users are able to reliably identify basic 2D shapes within 90s using only haptic feedback. Users were also able to identify smaller shapes with thin vibrating borders at rates comparable to their larger counterparts after being exposed to the larger shapes first. We also make observations on successful exploratory procedures employed and compare approaches among users. These findings serve to inform non-visual interface design using haptic feedback capabilities on touchscreens.
机译:振动和听觉反馈的显着进步已将触摸屏从简单的视觉输入/输出设备转变为高度互动和多模式的设备。虽然听觉反馈在听写足够的任务中很有用,但在需要图形解释的任务中,听觉反馈可能是乏味且受限的。在这项工作中,我们专注于探索程序,图形的识别准确性,以及当在触摸屏上仅使用振动反馈时,以较小的比例重复如何帮助用户识别相似的图形。我们与56个蒙着眼睛的参与者进行了形状识别任务。结果表明,用户仅使用触觉反馈就能够可靠地识别90年代内的基本2D形状。在首先暴露于较大形状之后,用户还能够以与较大的形状相当的速率识别具有薄边框的较小形状。我们还对成功采用的探索性程序进行了观察,并比较了用户之间的方法。这些发现有助于在触摸屏上使用触觉反馈功能来告知非视觉界面设计。

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