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Design of a robotic wheelchair with a motor imagery based brain-computer interface

机译:基于运动图像的脑机接口的机器人轮椅设计

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This paper presents a prototype for an electro-encephalogram (EEG) based brain-actuated wheelchair system using motor imagery. To overcome some of the limitations of other previous works, such as gaze dependence and unnecessary stops, five commands (left, left-diagonal, right, right-diagonal, and forward) were decoded based on the motor imagery correlates in EEG signals. Also, the system was modularized into three components: BCI control, and network. On the basis of the conclusions, we can expect a robust brain-actuated wheelchair system, which can allow the user's intention to control the wheelchair in multi-directional movements, thereby increasing the user's authority compared with many of the alternative approaches.
机译:本文提出了一种基于脑电图(EEG)的使用运动图像的脑动轮椅系统的原型。为了克服其他先前工作的某些局限性,例如视线依赖性和不必要的停止,根据脑电信号中的运动图像相关性,对五个命令(左,左对角,右,右对角和正向)进行了解码。而且,系统被模块化为三个组件:BCI控制和网络。根据这些结论,我们可以期待一个健壮的脑动轮椅系统,该系统可以使用户以多种方向控制轮椅,从而与许多其他方法相比,可以提高用户的权威性。

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