The HCI method for upper limb disabilities based on EMG and gyros

Tengyu Zhang, Lifeng Li, Heping Yan
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引用次数: 2

Abstract

In order to solve the issue of the paraplegias and upper limb disabilities to operate electronic devices, a barrier-free human-computer interaction (HCI) method based on electromyography (EMG) and gyroscopes was researched in this paper. After the analysis and test, the EMG signals of temporal muscle were selected as the control source. To bite as a trigger action, depending on different tooth movements, temporal muscles produce different characteristics of EMG signals, so that to control equipment for different functions. Using the output signal of gyro on the head, the information for head rotation can be obtained, and the equipment can be controlled to achieve the appropriate spatial displacement and positioning. Experiments show that, using this method, the user can easily achieve human-computer interaction by bite and slight head movements. It has good application prospects.
基于肌电和陀螺仪的上肢残疾HCI方法
为了解决截瘫上肢残疾人操作电子设备的问题,本文研究了一种基于肌电图和陀螺仪的无障碍人机交互方法。经过分析和测试,选择颞肌肌电信号作为对照源。以咬合为触发动作,根据不同的牙齿运动,颞肌产生不同特征的肌电信号,从而控制设备实现不同的功能。利用陀螺在机头上的输出信号,获取机头转动的信息,控制设备实现适当的空间位移和定位。实验表明,使用该方法,用户可以通过咬和轻微的头部运动轻松实现人机交互。具有良好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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