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Attitude Tracking of Enhanced Flexible Hybrid Nanogenerator in Human-computer Interaction

机译:人机交互中增强型柔性混合纳米发电机的姿态跟踪

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Human-computer interaction is a bridge connecting humans and intelligent robots. Signal sensing and feedback are the key links. In this paper, a reinforced flexible hybrid nanogenerator (NG) based on PVDF/ZnO is designed. In the hybrid mode, the open circuit voltage can reach 70 V, the short circuit current can reach 12 μA, and the output performance can be increased by 25%. In this experiment, the charge density of the PVDF/ZnO surface was 12.79 μC/m2, the power density was 1.22 μW/cm2, and a 500 μF supercapacitor could be filled in 100 s. Through finite element analysis and experimental tests, it is proved that it is a more sensitive self-powered flexible hybrid sensor, which can accurately record the amplitude and frequency of human motion. Through pressure-friction hybrid sensing, intelligent robots can realize gesture recognition and tracking of human.
机译:人机交互是连接人类和智能机器人的桥梁。信号感应和反馈是关键环节。本文设计了一种基于PVDF / ZnO的增强柔性混合纳米发电机(NG)。在混合模式下,开路电压可以达到70 V,短路电流可以达到12μA,输出性能可以提高25%。在该实验中,PVDF / ZnO表面的电荷密度为12.79μC/ m 2 ,功率密度为1.22μW/ cm 2 ,并且可以在100 s内充满500μF超级电容器。通过有限元分析和实验测试,证明它是一种更灵敏的自供电柔性混合传感器,可以准确记录人体运动的幅度和频率。通过压力摩擦混合感应,智能机器人可以实现手势识别和人体跟踪。

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