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An electrooculogram based assistive communication system with improved speed and accuracy using multi-directional eye movements

机译:基于电芯图的辅助通信系统,具有使用多向眼动运动的提高速度和精度

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Human-Computer Interface (HCI) enables people to control computer applications using bio-electric signals recorded from the body. HCI can be a potential tool for people with severe motor disabilities to communicate to external world through bio-electric signals. In an Electrooculogram (EOG) based HCI, signals during various eye (cornea) movements are employed to generate control signals. This paper presents the design of an EOG-based typing system which uses a virtual keyboard for typing letters on the monitor using 8 types of distinct EOG patterns. Identification of EOG pattern is based on the amplitude and timing of positive and negative components within the signal. Experimental results show that proposed EOG-based typing system achieves a higher typing speed of 15 letters/min and an improved accuracy of 95.2% compared to the state-of art method that has a typing speed of 12.1 letters/min and accuracy of 90.4%.
机译:人机界面(HCI)使人们能够使用从身体记录的生物电动信号控制计算机应用。 HCI可以成为具有严重运动残疾人的潜在工具,通过生物电信号与外界通信。在基于电帘图(EOG)的HCI中,采用各种眼睛(角膜)运动期间的信号来产生控制信号。本文介绍了一种基于EOG的键入系统的设计,它使用虚拟键盘使用8种不同的EOG图案在监视器上键入字母。 EOG模式的识别基于信号内的正和负组件的幅度和定时。实验结果表明,与具有12.1字母/ min的打字速度为12.1字母/最小值的最新方法和90.4%的最新方法,所提出的基于EOG的键入系统的速度为15字母/分钟的速度较高,提高精度为95.2% 。

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