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Development of a wearable HCI controller through sEMG IMU sensor fusion

机译:通过sEMG和IMU传感器融合开发可穿戴HCI控制器

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This paper studies a novel wearable human-computer interface that allows a user to interact with computer-based applications through the fusion of sEMG and IMU sensors. The proposed system is able to detect human motion intention, specifically, the gestures of the wrist and hand. It then translates the gestures and transmits it as command signals for computer-based applications. The novelty of the proposed system is the training-free control scheme to decode sEMG signals into target motions. The classified gestures could be identified by two sEMG sensors mounted on a forearm. One IMU sensor is used to calculate the real-time arm configuration. This can be a command signal for a cursor position in a computer-based application through the proposed projection method. Our method also comprises the drift compensation algorithm which makes our system more robust in prolonged operation. It also makes a user feel more comfortable. For evaluating the applicability of the proposed method, we developed a presentation controller that allows the user to control the mouse cursor, and three distinctive commands using wrist and hand gestures. The proposed system is validated by experiments with six subjects.
机译:本文研究了一种新颖的可穿戴人机界面,该界面允许用户通过sEMG和IMU传感器的融合与基于计算机的应用程序进行交互。所提出的系统能够检测人的运动意图,特别是手腕和手的手势。然后,它翻译手势并将其作为命令信号发送给基于计算机的应用程序。所提出系统的新颖性是将sEMG信号解码为目标运动的免训练控制方案。可以通过安装在前臂上的两个sEMG传感器来识别分类的手势。一个IMU传感器用于计算实时臂配置。通过提出的投影方法,这可以是用于基于计算机的应用程序中光标位置的命令信号。我们的方法还包括漂移补偿算法,该算法使我们的系统在长时间运行时更强大。这也使用户感到更舒适。为了评估所提出方法的适用性,我们开发了一种演示控制器,该控制器允许用户控制鼠标光标以及使用腕部和手势的三个独特命令。通过对六个对象的实验验证了所提出的系统。

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