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Waveform-Based Multi-Stimulus Coding for Brain-Computer Interfaces Based on Steady-State Visual Evoked Potentials

机译:基于波形的多刺激编码,基于稳态视觉诱发电位的脑电脑界面编码

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Multiple stimulus coding plays an important role in a steady-state visual evoked potential (SSVEP)-based brain-computer interface (BCI). In conventional SSVEP-based BCIs, multiple visual stimuli are modulated with different properties such as frequencies and/or phases. However, the number of properties that can be assigned to visual stimuli rendered on a computer monitor is always limited by its refresh rate, leading to a system with limited commands or functions. To alleviate this issue, this study proposes a novel waveform-based stimulus coding method that uses modulation waveforms to differentiate resulting SSVEPs. In this paper, the discriminability of 12-class SSVEPs modulated by three types of waveforms (i.e., rectangle, sinusoidal and triangle waveforms) and four frequencies (i.e., 12, 13, 14, and 15 Hz) was investigated by computing its classification accuracy. The results showed the SSVEPs modulated by different waveforms can be successfully distinguished when using the state-of-the-art canonical correlation analysis (CCA)-based method with an average accuracy of 92.31%. This result suggests that the proposed method has great potential to significantly increase the number of functions in an SSVEP-based BCI system.
机译:多重刺激编码起着稳态视觉诱发电位(SSVEP)为基础的脑机接口(BCI)具有重要作用。在常规的基于SSVEP-景气,多个视觉刺激被调制具有不同特性如频率和/或相位。然而,能够分配给呈现在计算机显示器上的视觉刺激的属性数总是由它的刷新速率的限制,导致具有有限的命令或功能的系统。为了缓解这一问题,本研究提出了一种新颖的基于波形刺激编码方法,该方法使用的调制波形来区分所得的SSVEPs。在本文中,12级的SSVEPs的可辨性调制由三种类型的波形(即,矩形,正弦形和三角形波形)和四个频率(即,12,13,14,和15赫兹)通过计算其分类精度研究。结果表明:通过不同的波形调制的的SSVEPs可使用状态的最先进的典型相关分析(CCA)基法的92.31%的平均精确度时,可以成功地区别。这一结果表明,该方法具有很大的潜力,显著增加基于SSVEP-BCI系统的功能的数量。

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