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OPTIMAL CHANNEL SELECTION FOR MULTI-CHANNEL SSVEP DETECTION AND CLASSIFICATION IN BCIS

机译:BCIS中多通道SSVEP检测和分类的最佳频道选择

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Many multi-channel techniques for Steady-State Visual-Evoked Potential (SSVEP) detection from EEG have shown signi cant improvement in the performance of Brain-Computer Interfaces (BCIs). Multichannel methods, generally involve deriving a spatial filter to linearly combine the EEG channels so as to minimize the noise energy and enhance the SSVEP response. In this paper, three state of the art multichannel techniques are studied and compared. The performance of the classifiers for varying number and combination of the EEG channels is studied to determine the optimal choice of channels that yield maximum classification accuracy. The correlation of different channel parameters with the net montage performance is also investigated. Results indicate that Minimum Energy Channel (MEC) based classifier yields the highest accuracy values using 6 channels for all the 3 subjects. Signi cance of non-occipital locations for signal acquisition has been observed. Further, results indicate that the choice of channels to be used in the montage is to be made keeping in mind their e ective signal strength, co-channel noise correlation values and signal to noise ratios. This ensures that a particular montage has e ectively assimilated the signal and noise components.
机译:来自EEG的稳态视觉诱发电位(SSVEP)检测的许多多通道技术已经显示出脑 - 计算机接口的性能(BCI)的显着提高。多通道方法,通常涉及导出空间滤波器以线性地组合EEG通道,以便最小化噪声能量并增强SSVEP响应。本文研究了三种现有技术的多通道技术。研究了用于变化数量和EEG信道组合的分类器的性能,以确定产生最大分类精度的通道的最佳选择。还研究了不同信道参数与净蒙太奇性能的相关性。结果表明,基于最小能量信道(MEC)的分类器使用6个通道的所有3个受试者产生最高精度值。已经观察到Signi Cance用于信号采集的非枕部位置。此外,结果表明要在蒙太奇中使用的频道的选择是为了考虑其E的E态信号强度,共信道噪声相关值和信噪比。这确保了特定的蒙太奇已经通过eFcecive同化信号和噪声分量。

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