Goldeye:使用混合现实和触觉振动反馈增强视障人士的空间意识

Jun Lee, Narayanan Rajeev, A. Bhojan
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引用次数: 4

摘要

六分之一的人有某种形式的视力障碍,从轻度视力丧失到完全失明。视障人士经常面临撞到人或危险物体的危险。本文提出使用触觉振动反馈作为视障使用者的障碍物检测系统。我们使用带有车载深度传感器的混合现实耳机来构建真实世界的数字地图,并使用带有一系列执行器的套装来提供反馈,以指示视障人士周围障碍物的位置。使用商用设备(Microsoft HoloLens和bHaptics Tactot)构建的简单原型证明了这一点,并进行了定性用户研究,以评估拟议系统的可行性。通过我们对模拟视觉障碍的受试者进行的用户测试,我们的结果证实了使用混合现实来检测环境中的障碍物的潜力,并且由于带宽有限,只能通过触觉服传输基本信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Goldeye: Enhanced Spatial Awareness for the Visually Impaired using Mixed Reality and Vibrotactile Feedback
One in six people have some form of visual impairment ranging from mild vision loss to total blindness. The visually impaired constantly face the danger of walking into people or hazardous objects. This thesis proposes the use of vibrotactile feedback to serve as an obstacle detection system for visually impaired users. We utilize a mixed reality headset with on-board depth sensors to build a digital map of the real world and a suit with an array of actuators to provide feedback as to indicate to the visually impaired the position of obstacles around them. This is demonstrated by a simple prototype built using commercially available devices (Microsoft HoloLens and bHaptics Tactot) and a qualitative user study was conducted to evaluate the viability of the proposed system. Through our user-testing performed on subjects with simulated visual impairments, our results affirm the potential of using mixed reality to detect obstacles in the environment along with only transmitting essential information through the haptic suit due to limited bandwidth.
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