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All-Direction In-Plane Magnetic Repulsion-Based Self-Powered Arbitrary Motion Sensor and Hybrid Nanogenerator

机译:基于面内磁力排斥的全方向的自动任意运动传感器和杂交纳米液

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In this paper, we report a 3D printed hybridized nanogenerator which can convert the in-plane arbitrary motions and vibrations into useful electrical energy. Also, it can detect in-plane arbitrary motions and vibrations effectively. The proposed device consists of a central magnet based hybridized electromagnetic (EMG) and triboelectric nanogenerator (TENG) and the repulsive force from central magnet drives the four side magnets for self-powered motion sensors (MS1, MS2, MS3 and MS4). The EMG and TENG generates the peak power of 18 mW at 193 $Omega$ and 3.25 $mu$ W at 10.5 M$Omega$ load resistance, respectively. The proposed motion sensor is capable of sensing arbitrary motion in 3-axis directions. With the integration of motion sensing capability as well as energy harvesting on the same device, a complete self-powered sensor system has been successfully demonstrated.
机译:在本文中,我们报告了一种3D印刷的杂交纳米能器,其可以将面内任意运动和振动转化为有用的电能。而且,它可以有效地检测平面内的任意运动和振动。所提出的装置包括基于中央磁铁的杂交电磁(EMG)和摩擦纳米料(滕电纳米电磁器(滕),并且来自中央磁体的排斥力驱动了用于自动运动传感器的四个侧磁体(MS1,MS2,MS3和MS4)。 EMG和Teng分别以193美元 Omega $ 18 MW的峰值功率分别为10.5 M $ Omega $负载阻力。所提出的运动传感器能够在3轴方向上感测任意运动。随着运动传感能力的集成以及相同设备上的能量收集,已成功显示完整的自动传感器系统。

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