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BCI and Eye Gaze: Collaboration at the Interface

机译:BCI和Eye Gaze:界面上的协作

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摘要

Due to an extensive list of restraints, brain-computer interface (BCI) technology has seen limited success outside of laboratory conditions. In order to address these limitations, which have prevented widespread deployment, an existing modular architecture has been adapted to support hybrid collaboration of commercially available BCI and eye tracking technologies. However, combining multiple input modalities, which have different temporal properties, presents a challenge in terms of data fusion and collaboration at the user interface. The use of cost-effective and readily available equipment will further promote hybrid BCI as a viable but alternative interface for human computer interaction. In this paper, we focus on navigation through a virtual smart home and control of devices within the rooms; the navigation being controlled by multimodal interaction. As such, it promises a better information transfer rate than BCI alone. Consequently, an extended architecture for a personalised hybrid BCI system has been proposed.
机译:由于约束条件的种类繁多,因此在实验室条件之外,脑机接口(BCI)技术取得的成功有限。为了解决阻止广泛部署的这些局限性,现有的模块化体系结构已进行了调整,以支持商用BCI和眼动跟踪技术的混合协作。但是,将具有不同时间属性的多个输入模态组合在一起,在用户界面上的数据融合和协作方面提出了挑战。具有成本效益和易于获得的设备的使用将进一步促进混合BCI作为人机交互的可行但可替代的接口。在本文中,我们专注于通过虚拟智能家居进行导航并控制房间内的设备。导航由多式联运控制。这样,它保证了比单独的BCI更好的信息传输速率。因此,已经提出了用于个性化混合BCI系统的扩展架构。

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