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首页> 外文期刊>International Journal of Control, Automation, and Systems >Gyro-Mouse for the Disabled: 'Click' and 'Position' Control of the Mouse Cursor
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Gyro-Mouse for the Disabled: 'Click' and 'Position' Control of the Mouse Cursor

机译:残疾人陀螺鼠标:鼠标光标的“单击”和“位置”控制

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摘要

This paper describes a 'gyro-mouse', which provides a new human-computer interface (HCI) for persons who are disabled in their upper extremities, for handling the mouse-click and mouse-move function. We adopted the artificial neural network to recognize a quick-nodding pattern of the disabled person as the gyro-mouse click. The performance of our gyro-mouse was evaluated by three indices that include 'click recognition rate', 'error in cursor position control', and 'click rate per minute' on a target box appearing at random positions. Although it turned out that the average error in cursor positioning control was 1.4-1.5 times larger than that of optical mouse control, and the average click rate per minute was 40% of the optical mouse, the overall click recognition rate was 93%. Moreover, the click rate per minute increased from 35.2% to 44% with repetitive trials. Hence, our suggested gyro-mouse system can be used to provide a new user interface tool especially for those persons who do not have full use of their upper extremities.
机译:本文介绍了一种“陀螺鼠标”,它为肢体上的残疾人提供了一种新的人机界面(HCI),用于处理鼠标单击和鼠标移动功能。我们采用人工神经网络将残疾人的快速点头模式识别为陀螺鼠标点击。我们通过三个指标来评估我们的陀螺鼠标的性能,这些指标包括出现在随机位置的目标框中的“单击识别率”,“光标位置控制错误”和“每分钟单击率”。尽管事实证明,光标定位控制中的平均错误比光学鼠标控件大1.4-1.5倍,并且每分钟的平均单击率是光学鼠标的40%,但总的单击识别率是93%。此外,在重复性试验中,每分钟的点击率从35.2%增加到44%。因此,我们建议的陀螺鼠标系统可用于提供一种新的用户界面工具,特别是针对那些没有充分利用上肢的人。

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