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Single channel electrooculography based Human-Computer Interface for physically disabled persons

机译:基于单通道眼电图的肢体残疾人人机界面

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Most of the paralyzed or physically disabled persons are unable to communicate with others, easily. To minimize this problem, different types of Human-Computer Interface (HCI) systems have been developed in recent years. In this paper, a single channel electrooculography (EOG) based HCI system has been proposed to increase the communication ability as well as quality of life for paralyzed persons who cannot speak or move their limbs. The extracted EOG signals are processed by our EOG acquisition system and sent it to a microcontroller unit which processes those signals for interfacing with computer via serial communication. A Graphical User Interface (GUI) is designed using MATLAB which contains some buttons to help a user to express what he/she wants through messages. A liquid crystal display (LCD) is used to show the messages. Our experimental results show that the maximum and minimum average time recorded for selecting 10 buttons for a particular user are 4.27 and 4.11 second, respectively. Particularly for selecting a button, the maximum and minimum average time recorded by every user are respectively 5.58 second and 1.82 second. We have found that the average button selection accuracy is around 95%.
机译:大多数瘫痪或肢体残疾的人无法轻松地与他人交流。为了最小化该问题,近年来已经开发了不同类型的人机界面(HCI)系统。本文提出了一种基于单通道眼动描记法(EOG)的HCI系统,以提高无法说话或移动肢体的瘫痪者的沟通能力和生活质量。提取的EOG信号由我们的EOG采集系统处理,然后将其发送到微控制器单元,该微控制器单元处理这些信号以通过串行通信与计算机接口。使用MATLAB设计了图形用户界面(GUI),其中包含一些按钮,以帮助用户通过消息表达他/她想要的东西。液晶显示器(LCD)用于显示消息。我们的实验结果表明,为特定用户选择10个按钮所记录的最大和最小平均时间分别为4.27秒和4.11秒。特别是对于选择按钮,每个用户记录的最大和最小平均时间分别为5.58秒和1.82秒。我们发现平均按钮选择准确度约为95%。

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