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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Design of a Novel Efficient Human–Computer Interface: An Electrooculagram Based Virtual Keyboard
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Design of a Novel Efficient Human–Computer Interface: An Electrooculagram Based Virtual Keyboard

机译:新型高效的人机界面设计:基于电耳蜗的虚拟键盘

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摘要

The aim of this paper is to present the design and application of an electrooculogram (EOG) based on an efficient human–computer interface (HCI). Establishing an alternative channel without speaking and hand movements is important in increasing the quality of life for the handicapped. EOG-based systems are more efficient than electroencephalogram (EEG)-based systems in some cases. By using a realized virtual keyboard, it is possible to notify in writing the needs of the patient in a relatively short time. Considering the biopotential measurement pitfalls, the novel EOG-based HCI system allows people to successfully communicate with their environment by using only eye movements. Classifying horizontal and vertical EOG channel signals in an efficient interface is realized in this study. The new system is microcontroller based, with a common-mode rejection ratio of 88 dB, an electronic noise of 0.6 $muhbox{V}$ (p-p), and a sampling rate of 176 Hz. The nearest neighborhood algorithm is used to classify the signals, and the classification performance is 95%. The novel EOG-based HCI system allows people to successfully and economically communicate with their environment by using only eye movements.
机译:本文的目的是介绍基于高效人机界面(HCI)的眼电图(EOG)的设计和应用。建立不讲话和不动手的替代渠道对于提高残疾人的生活质量至关重要。在某些情况下,基于EOG的系统比基于脑电图(EEG)的系统更有效。通过使用实现的虚拟键盘,可以在相对较短的时间内以书面形式通知患者的需求。考虑到生物电势测量的陷阱,新颖的基于EOG的HCI系统使人们仅通过眼动即可成功地与周围环境进行交流。这项研究实现了在有效接口中对水平和垂直EOG通道信号进行分类。新系统是基于微控制器的,具有88 dB的共模抑制比,0.6μmuhbox{V} $(p-p)的电子噪声和176 Hz的采样率。采用最近邻算法对信号进行分类,分类性能为95%。新颖的基于EOG的HCI系统使人们仅通过眼动即可成功且经济地与周围环境进行交流。

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