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Hybrid EEG-fNIRS based quadcopter control using active prefrontal commands

机译:基于混合EEG-FNIRS使用主动前额框命令的Quadcopter控件

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In this paper, we have improved the classification accuracy of four prefrontal commands decoded using hybrid electroencephalography-functional near-infrared spectroscopy (EEG-fNIRS) for quadcopter. Mental arithmetic, mental counting, word formation, and mental rotation are used as brain task to generate the commands. The brain signals are decoded simultaneously in a single window using hybrid EEG-fNIRS. We extracted the neuronal and hemodynamic features in 0~2 sec, 0~2.25 sec, and 0~2.5 sec windows. An overlapping window of 0.25 sec is used for online/real-time analysis. Signal peak, signal mean, and signal power are computed as features for EEG. Signal mean, signal slope, signal peak, and minimum negative value are computed as features for fNIRS. We used linear discriminant analysis to classify the features in online scenario. The generated commands are transferred to a quadcopter using Wi-Fi. The quadcopter movements are controlled by the transmitted brain commands. Our results showed that overall system accuracy for fNIRS was increased from 69% to 84 % by combining features with EEG. This enabled more stable control for the quadcopter. Therefore the result seems significant for brain-computer interface applications.
机译:在本文中,我们利用混合脑电图函数近红外光谱(EEG-FNIR)来改善了四个前额落命令的分类精度用于Quadcopter。精神算术,心理计数,单词形成和心理旋转用作大脑任务以生成命令。使用混合EEG-FNIRS在单个窗口中同时解码大脑信号。我们提取了0〜2秒,0〜2.25秒,0〜2.5秒的窗口中的神经元和血液动力学特征。 0.25秒的重叠窗口用于在线/实时分析。信号峰值,信​​号平均值和信号功率被计算为EEG的功能。信号平均值,信号斜率,信号峰值和最小负值被计算为Fnirs的特征。我们使用线性判别分析来对在线情景中的功能进行分类。使用Wi-Fi将生成的命令传送到二岔器。 Quadcopter运动由传输的大脑命令控制。我们的研究结果表明,通过将功能与EEG结合,FNIR的整体系统精度从69 %增加到84 %。这使得对Quadcopter的控制更稳定。因此,脑电脑接口应用似乎很重要。

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