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A speed and direction-based cursor control system with P300 and SSVEP

机译:具有P300和SSVEP的基于速度和方向的光标控制系统

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摘要

In this paper, we propose a novel two-dimension (2-D) cursor control system by using steady state visual evoked potential (SSVEP) and P300 signals to control the direction and speed of the cursor, respectively. A hybrid stimulus interface is developed, where P300 visual stimuli are distributed at the top and bottom edges, representing accelerating and decelerating commands, respectively, and SSVEP stimuli, representing turning clockwise and counterclockwise, respectively, are located at the right and left sides. A classifier built with support vector machine is first used to distinguish between the direction and speed control commands, and if the classification result is the speed control command, a linear classifier is then applied to classify accelerating and decelerating commands. A real-time cursor control system is developed and tested with eight participants. The experimental results show that the cursor control system has satisfactory efficiency and accuracy, and the cursor movement is smooth and continuous. More importantly, it can work for the users, who are unable to produce event-related desynchronization/event-related synchronization (ERD/ERS) well but can produce P300 and SSVEP potentials compared to other 2-D cursor control systems. The proposed system can be used as a complementary, sometimes an alternative, system to the existing 2-D cursor control systems.
机译:在本文中,我们提出了一种新颖的二维(2-D)光标控制系统,它利用稳态视觉诱发电位(SSVEP)和P300信号分别控制光标的方向和速度。开发了一种混合刺激界面,其中P300视觉刺激分布在顶部和底部边缘,分别代表加速和减速命令,而SSVEP刺激分别代表顺时针和逆时针旋转,分别位于右侧和左侧。首先使用由支持向量机构建的分类器来区分方向和速度控制命令,如果分类结果是速度控制命令,则使用线性分类器对加速和减速命令进行分类。开发了实时光标控制系统,并由八名参与者进行了测试。实验结果表明,该游标控制系统具有令人满意的效率和精度,并且游标移动平稳连续。更重要的是,它可以为那些无法产生与事件相关的不同步/与事件相关的同步(ERD / ERS)的用户提供帮助,但与其他2-D光标控制系统相比,它们可以产生P300和SSVEP电位。所提出的系统可以用作现有2-D光标控制系统的补充,有时是替代的系统。

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  • 来源
    《Biomedical signal processing and control》 |2014年第11期|126-133|共8页
  • 作者单位

    School of Mechanical Engineering, Beijing Institute of Technology, Beijing, China;

    School of Mechanical Engineering, Beijing Institute of Technology, Beijing, China;

    School of Mechanical Engineering, Beijing Institute of Technology, Beijing, China;

    School of Automation, Beijing Institute of Technology, Beijing, China;

    Department of Industrial and Operations Engineering, University of Michigan, USA;

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