基于脑电图的BCI电视遥控器的设计与实现

IF 1.7 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS International Journal of Online and Biomedical Engineering Pub Date : 2023-08-01 DOI:10.3991/ijoe.v19i10.38843
H. A. Ali, Liwa Abdullah Ali, A. Vasilățeanu, N. Goga, R. Popa
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引用次数: 0

摘要

脑机接口是生物医学工程中一个快速发展的领域,因为它能够实现中枢神经系统和外部设备之间的直接连接。脑机接口使用安装在头部头皮上或植入大脑的生物传感器(电极)检测大脑信号。脑电图是一种检测和监测大脑活动的非侵入性方法。在医学领域使用基于脑电图的脑机接口可以显著帮助残疾人进行日常活动。在这种情况下,通过开发合适的解决方案来支持瘫痪者并使其能够与电视等多媒体设备进行交互是非常重要的。本文提出了一种脑电脑控电视遥控系统原型。所提出的原型使用价格合理的硬件组件来执行其任务。已经进行了定量问卷调查,以确定系统的功能和非功能需求。该系统可以发送四种不同的信号来打开/关闭电源、切换频道、提高和降低电视音量。该系统已被20名受试者测试。测试结果表明,该系统的准确率为74.9%。尽管该系统只能控制四个电视功能,但该系统具有可扩展性,未来可以添加更多命令。此外,在系统中使用Raspberry Pi可以极大地消除计算机,并直接与耳机一起使用Raspbrry Pi。本文证明了该方法的可行性,并为增强系统和在更多不同的设备上使用基于EEG的脑机接口开辟了途径。
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Towards Design and Implementation of an EEG-based BCI TV Remote Control
BCI is a rapidly growing field within biomedical engineering as it enables a direct connection between the central nervous system and an external device. BCI detects brain signals using biosensors (electrodes) installed on the head’s scalp or implanted inside the brain. EEG is a non-invasive method for detecting and monitoring the brain’s activity. Using EEG-based BCI in the medical field can significantly help disabled people to perform daily activities. In this context, it is very important to support and enable paralysed people to interact with multimedia devices like televisions by developing suitable solutions. This paper proposes an EEG mind-controlled TV remote control system prototype. The proposed prototype uses affordable hardware components to perform its task. A quantitative questionnaire has been conducted to identify the system’s functional and non-functional requirements. The system can send four different signals to power on/off, change the channel, raise and reduce the volume of the TV. The system has been tested by 20 subjects. The testing results show that the accuracy of the system is 74.9%. Despite the system being able to control only four TV functions, the system is scalable, and more commands can be added in the future. Also, using Raspberry Pi in the system gives a great possibility to eliminate the computer and to use Raspberry Pi directly with the headset. This paper demonstrates the approach’s feasibility and opens the route for enhancing the system and using EEG-based BCI with more and different devices.
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来源期刊
CiteScore
4.00
自引率
46.20%
发文量
143
审稿时长
12 weeks
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