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LotusBraille: Localised Multifinger Feedback on a Surface for Reading Braille Letters

机译:lotusbraille:局部的多蛋白反馈在读盲文字母的表面上

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Digital tactile surfaces are an integral part of our everyday life, through our smartphones, ATMs or home appliances. Even though they rely on touch interaction, they are devoid of rich and multipoint tactile feedback, thus leaving the visual and the auditory modalities as the main ones to convey content. Therefore, these surfaces pose accessibility challenges to the visually impaired, imposing reliance on text-to-speech engines or external peripherals such as Braille displays. This can be impractical in noisy or crowded environments, or for short-term usage. One important issue is Braille rendering; current technologies are not able to render Braille dots at the mm scale with vibrotactile technologies, mainly as vibrations propagate to the entire surface. Alternative technologies or rendering methods have been investigated but most rely on dedicated displays or have used workarounds to provide localised Braille on a surface, either with a different encoding, wearables or add-ons. With our latest achievements in localised multipoint haptic feedback on a surface, with the Inverse Filter method, we evaluated this technology, called LotusBraille, to convey Braille letters based on the Perkins Brailler input method with visually impaired users and obtained promising results.
机译:数字触觉表面是我们日常生活的一个组成部分,通过我们的智能手机,ATM或家用电器。即使他们依靠触摸互动,它们也没有富有的多点触觉反馈,从而将视觉和听觉方式作为主要传达内容的触觉反馈。因此,这些表面对视觉损害的可访问性挑战,迫使依赖于文本到语音发动机或诸如盲文显示器的外部外围设备。这在嘈杂或拥挤的环境中可能是不切实际的,或短期使用。一个重要问题是盲文渲染;目前的技术无法以诸如振动触控技术在MM刻度上呈现盲文点,主要是振动传播到整个表面。已经研究了替代技术或渲染方法,但最依赖于专用的显示器或使用变通方法在表面上提供本地化的盲文,无论是不同的编码,可穿戴设备还是加载项。凭借我们在局域化的局部多点触觉反馈中的最新成就,通过逆滤波方法,我们评估了这项技术,称为Lotusbraille,以普瑞斯布拉勒进入方法传达盲文信件,并获得了有前视力障碍的用户并获得了有希望的结果。

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