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Magnifying Smartphone Screen Using Google Glass for Low-Vision Users

机译:使用谷歌眼镜为弱视用户放大智能手机屏幕

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Magnification is a key accessibility feature used by low-vision smartphone users. However, small screen size can lead to loss of context and make interaction with magnified displays challenging. We hypothesize that controlling the viewport with head motion can be natural and help in gaining access to magnified displays. We implement this idea using a Google Glass that displays the magnified smartphone screenshots received in real time via Bluetooth. Instead of navigating with touch gestures on the magnified smartphone display, the users can view different screen locations by rotating their head, and remotely interacting with the smartphone. It is equivalent to looking at a large virtual image through a head contingent viewing port, in this case, the Glass display with ~15/spl deg/ field of view. The system can transfer seven screenshots per second at 8x magnification, sufficient for tasks where the display content does not change rapidly. A pilot evaluation of this approach was conducted with eight normally sighted and four visually impaired subjects performing assigned tasks using calculator and music player apps. Results showed that performance in the calculation task was faster with the Glass than with the phone's built-in screen zoom. We conclude that head contingent scanning control can be beneficial in navigating magnified small smartphone displays, at least for tasks involving familiar content layout.
机译:放大是低视智能手机用户使用的关键辅助功能。但是,小屏幕尺寸可能会导致上下文丢失,并使与放大显示的交互变得困难。我们假设用头部运动来控制视口是很自然的,并有助于获得放大显示。我们使用Google Glass来实现此想法,该眼镜可显示通过蓝牙实时接收的放大的智能手机屏幕截图。用户可以通过旋转头部并与智能手机进行远程交互来查看不同的屏幕位置,而不用在放大的智能手机显示屏上进行触摸手势导航。这等效于通过头部视口观察大型虚拟图像,在这种情况下,Glass显示器的视场约为15 / spl deg /。该系统每秒可以以8倍的放大率传输七个屏幕截图,足以应付显示内容变化不快的任务。通过使用计算器和音乐播放器应用程序对八名正常视力和四名视力障碍的受试者执行分配的任务,对该方法进行了初步评估。结果表明,使用Glass进行计算任务的性能要比使用手机的内置屏幕缩放功能更快。我们得出的结论是,头部条件扫描控制至少在涉及熟悉的内容布局的任务中可以在放大的小型智能手机显示屏中导航。

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