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Structure design and wireless transmission application of hybrid nanogenerators for swinging mechanical energy and solar energy harvesting

机译:结构设计和无线传输应用混合王中林教授摆动收获机械能源和太阳能

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摘要

With the rapid development of the Internet of Things, the maintenance-free and reliable power supply of widely distributed sensors is still a huge challenge, especially in wireless areas. Wireless power transmission is expected to alleviate the issue that the sensors must be connected by wire to power supply devices. Herein, a novel hybrid nanogenerator combining a triboelectric nanogenerator (TENG) and photovoltaic cell has been demonstrated, which can realize the simultaneous collection and wireless power transmission of swinging mechanical energy and solar energy. The wireless power transmission system based on the hybrid nanogenerator can be actualized through series connection of the TENG and photovoltaic cell with the aid of a specifically designed mechanical switch, enabling the system to generate DC pulses that favor transmitting energies through LC oscillation and a coupled receiver coil. At the receiver coil end, the open-circuit voltage (V-oc) of the hybrid nanogenerator can reach 80 V, showing excellent wireless output performance and the rationality of the wireless power transmission circuit. Moreover, the hybrid nanogenerator can wirelessly power a commercial temperature-humidity meter, which indicates the remarkable potential of improving the layout flexibility of sensor nodes. This work successfully realizes the wireless power transmission of hybrid nanogenerator-harvested swinging mechanical energy and solar energy by a simple and feasible circuit design, which can enrich the form of micro/nano energy adapted to wireless energy transmission.
机译:互联网的快速发展事情,不需维护的和可靠的电力供应仍然是一个广泛分布的传感器巨大的挑战,特别是在无线领域。预计无线电力传输传感器必须缓解的问题通过电线连接到电源设备。在此,一种新颖的混合王中林教授结合摩擦电王中林教授(邓)和光伏电池已经证明,可以实现同时收集和无线电力传输的摆动机械能源和太阳能。基于混合动力传动系统王中林教授可以实现通过系列腾和光伏电池的连接一个专门设计的机械的帮助开关,使系统产生直流脉冲通过LC,支持传输能量振荡和接收机耦合线圈。接收线圈,开路电压(V-oc)混合王中林教授可以达到80V,显示了较好的无线输出性能和无线电力的合理性传输电路。王中林教授可以无线电力商业温湿度计,表示非凡的潜力提高布局传感器节点的灵活性。成功地实现了无线电力传输的混合nanogenerator-harvested旋转机械能源和太阳能可以简单而可行的电路设计微/纳米能源丰富的形式适应无线能量传输。

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