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Combined Use of Rear Touch Gestures and Facial Feature Detection to Achieve Single-Handed Navigation of Mobile Devices

机译:结合使用后方触摸手势和面部特征检测来实现移动设备的单手导航

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To improve single-handed operation of mobile devices, rear touch panel operation to control commands and facial feature detection to control cursor position are proposed. Operational control is achieved through finger chord gestures on a rear touch panel, and nose movement is used to control cursor movement. Zooming is achieved by detecting the apparent distance between the left and right eyes in conjunction with a finger chord gesture. We have evaluated movement time, error rates, and the throughputs of these techniques in comparison with the conventional single-handed front touch panel thumb operations using Fitts's law. Experiments have been conducted to evaluate two operation modes, selection and zooming, in the form of reciprocal 1-D pointing tasks with 12 participants. For the target selection task, the proposed technique achieved 12% (0.26 s) shorter movement time and 4.7% smaller error rate than the conventional method on average. Especially, for long distance targets, the performance of the conventional method became remarkably inferior due to the limit of reach of the thumb, whereas the proposed technique achieved much less deterioration and obtained expected performance because the cursor could reach anywhere on the display. For the target size adjustment task, the proposed technique achieved 9% (0.22 s) shorter movement time than the conventional method and obtained a comparable error rate of less than 4%. Consequently, we could demonstrate the techniques that make single-handed select and zoom operations available anywhere on a large-sized tablet device with no blockage of the display.
机译:为了改善移动设备的单手操作,提出了用于控制命令的后触摸面板操作和用于控制光标位置的面部特征检测。通过后触摸面板上的手指和弦手势可实现操作控制,并且鼻子移动用于控制光标移动。缩放是通过结合手指和弦手势检测左眼和右眼之间的表观距离来实现的。与使用菲茨定律的传统单手前触摸面板拇指操作相比,我们评估了这些技术的移动时间,错误率和吞吐量。已经进行了实验,以12位参与者相互进行的1-D指向任务的形式评估了两种操作模式,即选择和缩放。对于目标选择任务,所提出的技术平均比传统方法缩短了12%(0.26 s)的移动时间,并降低了4.7%的错误率。特别是对于长距离目标,由于拇指的触及范围有限,传统方法的性能明显变差,而所提出的技术由于光标可能到达显示器上的任何地方而导致的劣化少得多,并且获得了预期的性能。对于目标尺寸调整任务,所提出的技术比传统方法的运动时间缩短了9%(0.22 s),并且可比误差率小于4%。因此,我们可以展示使单手选择和缩放操作在大型平板电脑设备上的任何位置都可用而不会阻塞显示的技术。

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