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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >A Wearable Brain–Computer Interface Instrument for Augmented Reality-Based Inspection in Industry 4.0
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A Wearable Brain–Computer Interface Instrument for Augmented Reality-Based Inspection in Industry 4.0

机译:可穿戴式脑机接口仪器,用于工业4.0中基于增强现实的检测

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摘要

This paper proposes a wearable monitoring system for inspection in the framework of Industry 4.0. The instrument integrates augmented reality (AR) glasses with a noninvasive single-channel brain;computer interface (BCI), which replaces the classical input interface of AR platforms. Steady-state visually evoked potentials (SSVEP) are measured by a single-channel electroencephalography (EEG) and simple power spectral density analysis. The visual stimuli for SSVEP elicitation are provided by AR glasses while displaying the inspection information. The real-time metrological performance of the BCI is assessed by the receiver operating characteristic curve on the experimental data from 20 subjects. The characterization was carried out by considering stimulation times from 10.0 down to 2.0 s. The thresholds for the classification were found to be dependent on the subject and the obtained average accuracy goes from 98.9 & x0025; at 10.0 s to 81.1 & x0025; at 2.0 s. An inspection case study of the integrated AR-BCI device shows encouraging accuracy of about 80 & x0025; of lab values.
机译:本文提出了一种在工业4.0框架下进行检查的可穿戴监控系统。该仪器将增强现实(AR)眼镜与无创单通道大脑计算机接口(BCI)集成在一起,从而取代了AR平台的传统输入接口。稳态视觉诱发电位(SSVEP)通过单通道脑电图(EEG)和简单的功率谱密度分析进行测量。在显示检查信息时,AR眼镜会提供用于SSVEP激发的视觉刺激。 BCI的实时计量性能通过接收器工作特性曲线对来自20位受试者的实验数据进行评估。通过考虑从10.0到2.0 s的刺激时间进行表征。发现分类的阈值取决于受试者,并且获得的平均准确度为98.9&x0025;在10.0 s至81.1&x0025;在2.0 s。集成AR-BCI设备的检查案例研究显示,令人鼓舞的精度约为80&x0025;实验室值。

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