Kontrol Robot Menggunakan Gerakan Mata Berbasis Sinyal Electrooculography (EOG)

Kemahyanto Exaudi, R. Rendyansyah, A. P. Prasetyo
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Abstract

Biomedical technology has now been widely adopted as a means of monitoring the human body in real-time. For example, to detect eye movement. In the medical world, eye movement can be used to determine the type of disease. With the application of human-machine interface (HMI) technology, eyeball movement can be developed in the robotics industry as robot navigation. For example, by moving the eyeball left and right, the robot can interpret the eye signal to move left and right. The interaction between the eyeball movement and the robot is of particular concern in this study. This study aimed to design a measuring instrument for eye movement detection using Electrooculography (EOG) techniques to move a wheeled robot. The EOG measuring instrument consisting of an instrument differential amplifier, a low pass filter, and a high pass filter has been applied in this research. The signal generator technique on EOG is carried out by placing electrodes on three sides of the face, namely forehead (G), left horizontal (H-), right horizontal (H +). The experimental results showed a significant difference between the left and right eye movement amplitude signals. This amplitude is used to classify the movement of the robot wheel towards the left and right. The process of sending robot signals and EOG measuring instruments uses Bluetooth HC-05 serial communication. Based on the research results, it is proven that the robot manages to move left and right according to the eyeball movement.
利用眼动眼电图信号(EOG)控制机器人
生物医学技术现在已被广泛采用,作为实时监测人体的一种手段。例如,检测眼球运动。在医学界,眼球运动可以用来确定疾病的类型。随着人机界面技术的应用,眼球运动可以作为机器人导航在机器人行业得到发展。例如,通过左右移动眼球,机器人可以将眼睛信号解释为左右移动。眼球运动和机器人之间的相互作用是本研究中特别关注的问题。本研究旨在设计一种利用眼电图(EOG)技术移动轮式机器人的眼动检测测量仪器。EOG测量仪由仪器差分放大器、低通滤波器和高通滤波器组成。EOG的信号发生器技术是通过将电极放置在面部的三个侧面来实现的,即前额(G)、左水平(H-)、右水平(H+)。实验结果显示,左眼和右眼运动幅度信号之间存在显著差异。该幅度用于对机器人轮子向左和向右的运动进行分类。机器人信号和EOG测量仪器的发送过程使用蓝牙HC-05串行通信。基于研究结果,证明了机器人能够根据眼球的运动左右移动。
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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