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Brain computer interface for smart hardware device

机译:智能硬件设备的大脑计算机接口

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摘要

A brain-computer interface, is a direct communication pathway between a human or animal brain and an external device. Work is being done to identify objects, images, videos and their colour compositions. When humans watch the surrounding environment, visual data is processed by the brain, and it is possible to reconstruct the same on the screen with some appreciable accuracy by analysing the physiological data. This data is acquired by using one of the non-invasive techniques like electroencephalography (EEG) in Brain Computer Interface (BCI). The immediate goal of BCI research is to provide communications capabilities to severely disabled people who are totally paralyzed or ‘locked in’ by neurological neuromuscular disorders, such as amyotrophic lateral sclerosis, brain stem stroke, or spinal cord injury. The prototype discussed in this paper works on features learning and classification centric techniques using support vector machine. The suggested pipeline, ensures successful navigation of a robot in four directions in real time with accuracy of 93%.
机译:脑机接口是人或动物的大脑与外部设备之间的直接通信路径。正在进行识别对象,图像,视频及其颜色组成的工作。当人们观看周围的环境时,视觉数据将由大脑处理,并且可以通过分析生理数据在屏幕上以一定的精度重建视觉数据。通过使用一种非侵入性技术(例如脑计算机接口(BCI)中的脑电图(EEG))来获取此数据。 BCI研究的近期目标是为严重失能的人提供交流功能,这些人完全被神经系统性神经肌肉疾病(如肌萎缩性侧索硬化症,脑干中风或脊髓损伤)瘫痪或“锁定”。本文讨论的原型使用支持向量机研究以特征学习和分类为中心的技术。建议的管道可确保机器人在四个方向上实时成功导航,准确度达93%。

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