首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Balancing a simulated inverted pendulum through motor imagery: An EEG-based real-time control paradigm
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Balancing a simulated inverted pendulum through motor imagery: An EEG-based real-time control paradigm

机译:通过运动图像平衡模拟的倒立摆:基于EEG的实时控制范例

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摘要

Most brain-computer interfaces (BCIs) are non-time-restraint systems. However, the method used to design a real-time BCI paradigm for controlling unstable devices is still a challenging problem. This paper presents a real-time feedback BCI paradigm for controlling an inverted pendulum on a cart (IPC). In this paradigm, sensorimotor rhythms (SMRs) were recorded using 15 active electrodes placed on the surface of the subject's scalp. Subsequently, common spatial pattern (CSP) was used as the basic filter to extract spatial patterns. Finally, linear discriminant analysis (LDA) was used to translate the patterns into control commands that could stabilize the simulated inverted pendulum. Offline trainings were employed to teach the subjects to execute corresponding mental tasks, such as left/right hand motor imagery. Five subjects could successfully balance the online inverted pendulum for more than 35. s. The results demonstrated that BCIs are able to control nonlinear unstable devices. Furthermore, the demonstration and extension of real-time continuous control might be useful for the real-life application and generalization of BCI.
机译:大多数脑机接口(BCI)是非时间限制系统。但是,用于设计用于控制不稳定设备的实时BCI范例的方法仍然是一个具有挑战性的问题。本文提出了一种实时反馈BCI范例,用于控制推车上的倒立摆(IPC)。在该范例中,使用放置在受试者头皮表面的15个有源电极记录了感觉运动节律(SMR)。随后,使用公共空间模式(CSP)作为基本过滤器来提取空间模式。最后,使用线性判别分析(LDA)将模式转换为可以稳定模拟倒立摆的控制命令。离线培训被用来教受试者执行相应的心理任务,例如左/右手运动图像。五个科目可以成功平衡在线倒立摆超过35秒。结果表明,BCI能够控制非线性不稳定设备。此外,实时连续控制的演示和扩展可能对BCI的实际应用和推广有用。

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