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A STUDY TOWARDS DEVELOPMENT OF AN AUTOMATED HAPTIC USER INTERFACE (AHUI) FOR INDIVIDUALS WHO ARE BLIND OR VISUALLY IMPAIRED

机译:盲人或视力障碍者自动触觉用户界面(AHUI)的开发研究

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摘要

An increasing amount of information content used in schools, work and everyday living is being presented in graphical form, creating accessibility challenges for individuals who are blind or visually impaired, especially in dynamic environments, such as over the internet. Refreshable haptic displays that can interact with computers can be used to access such information tactually. Main focus of this study was the development of specialized computer applications allowing users to actively compensate for the inherent issues of haptics when exploring visual diagrams as compared to vision, which we hypothesized, would improve the usability of such devices. An intuitive zooming algorithm capable of automatically detecting significant different zoom levels, providing auditory feedback, preventing cropping of information and preventing zooming in on areas where no features were present was developed to compensate for the lower spatial resolution of haptics and was found to significantly improve the performance of the participants. Another application allowing the users to perform dynamic simplifications on the diagram to compensate for the serial based nature of processing 2D geometric information was tested and found to significantly improve the performance of the participants. For both applications participants liked the user interface and found it more usable, as expected. In addition, in this study we investigated methods that can be used to effectively present different visual features as well as overlaying features present in the visual diagrams. Three methods using several combinations of tactile and auditory modalities were tested. We found that the performance significantly improves when using the overlapping method using different modalities. For tactile only methods developed for deaf blind individuals, the toggle method was surprisingly preferred as compared to the overlapping method.
机译:越来越多的学校,工作和日常生活中使用的信息内容以图形形式呈现,这给盲人或视力障碍者(尤其是在动态环境中,例如通过Internet)的盲人或视障者带来了可访问性挑战。可以与计算机交互的可刷新触觉显示器可用于触觉访问此类信息。这项研究的主要重点是开发专门的计算机应用程序,使用户在探索视觉图时可以主动补偿触觉的内在问题,而我们认为,与视觉相比,视觉触觉的问题会改善此类设备的可用性。开发了一种直观的缩放算法,该算法能够自动检测明显的不同缩放级别,提供听觉反馈,防止信息裁剪以及防止在不存在任何功能的区域上进行缩放,以补偿触觉的较低空间分辨率,并发现该算法可以显着改善触摸屏的分辨率。参与者的表现。测试了允许用户在图表上执行动态简化以补偿处理2D几何信息的基于序列的性质的另一个应用程序,发现该应用程序可以显着提高参与者的性能。对于这两个应用程序,参与者都喜欢用户界面,并发现它比预期的更有用。另外,在这项研究中,我们研究了可用于有效呈现不同视觉特征以及视觉图中存在的叠加特征的方法。测试了使用触觉和听觉方式的几种组合的三种方法。我们发现,当使用使用不同模态的重叠方法时,性能显着提高。对于为聋盲人开发的仅触觉方法,与重叠方法相比,肘节方法令人惊讶地优选。

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    Rastogi Ravi;

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  • 年度 2012
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