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心理负荷估计中的滤波器组公共空间模式

Filter bank common spatial patterns in mental workload estimation.

作者信息

Arvaneh Mahnaz, Umilta Alberto, Robertson Ian H

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:4749-52. doi: 10.1109/EMBC.2015.7319455.

Abstract

EEG-based workload estimation technology provides a real time means of assessing mental workload. Such technology can effectively enhance the performance of the human-machine interaction and the learning process. When designing workload estimation algorithms, a crucial signal processing component is the feature extraction step. Despite several studies on this field, the spatial properties of the EEG signals were mostly neglected. Since EEG inherently has a poor spacial resolution, features extracted individually from each EEG channel may not be sufficiently efficient. This problem becomes more pronounced when we use low-cost but convenient EEG sensors with limited stability which is the case in practical scenarios. To address this issue, in this paper, we introduce a filter bank common spatial patterns algorithm combined with a feature selection method to extract spatio-spectral features discriminating different mental workload levels. To evaluate the proposed algorithm, we carry out a comparative analysis between two representative types of working memory tasks using data recorded from an Emotiv EPOC headset which is a mobile low-cost EEG recording device. The experimental results showed that the proposed spatial filtering algorithm outperformed the state-of-the algorithms in terms of the classification accuracy.

摘要

基于脑电图的工作负荷估计技术提供了一种评估心理工作负荷的实时手段。这种技术可以有效地提高人机交互和学习过程的性能。在设计工作负荷估计算法时,一个关键的信号处理组件是特征提取步骤。尽管在该领域已有多项研究,但脑电图信号的空间特性大多被忽视。由于脑电图本身的空间分辨率较差,从每个脑电图通道单独提取的特征可能不够有效。当我们使用稳定性有限但成本低廉且方便的脑电图传感器时,这个问题会变得更加明显,而实际情况正是如此。为了解决这个问题,在本文中,我们引入了一种滤波器组公共空间模式算法,并结合一种特征选择方法来提取区分不同心理工作负荷水平的时空频谱特征。为了评估所提出的算法,我们使用从Emotiv EPOC耳机记录的数据,对两种具有代表性的工作记忆任务进行了对比分析,该耳机是一种移动低成本脑电图记录设备。实验结果表明,所提出的空间滤波算法在分类准确率方面优于现有算法。

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