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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >An Optimal Electrical Impedance Tomography Drive Pattern for Human-Computer Interaction Applications
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An Optimal Electrical Impedance Tomography Drive Pattern for Human-Computer Interaction Applications

机译:用于人机交互应用的最佳电气阻抗断层扫描模式

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摘要

In this article, we presented an optimal Electrical Impedance Tomography (EIT) drive pattern based on feature selection and model explanation, and proposed a portable EIT system for applications in human-computer interaction for gesture recognition and contact detection, which can reduce the measurement time and realize a performance trade-off between the accuracy and the time response. In our experiment, eleven hand gestures were designed to verify the proposed approach and EIT system. Compared to the traditional eight-electrode method, the optimal electrode drive pattern achieved a recognition accuracy of 97.5% with seven electrodes and the measurement time was reduced by 60%. To illustrate the universality of this method, we performed a contact detection experiment. By setting seven labels on the conductive panel and using optimal electrode drive pattern, the detection accuracy reached 100% with seven electrodes and the measurement time was reduced by 85%.
机译:在本文中,我们提出了一种基于特征选择和模型解释的最佳电气阻抗断层扫描(EIT)驱动模式,并提出了用于手势识别和接触检测的人机交互中的便携式EIT系统,可以减少测量时间并在准确性和时间响应之间实现性能权衡。在我们的实验中,Eleven手势旨在验证所提出的方法和EIT系统。与传统的八个电极方法相比,最佳电极驱动图案达到七个电极97.5%的识别精度,测量时间减少了60%。为了说明这种方法的普遍性,我们进行了接触检测实验。通过在导电板上设定七个标签并使用最佳电极驱动图案,检测精度达到100%,七个电极达到100%,测量时间减少了85%。

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