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首页> 外文期刊>Nano Energy >Wind-driven hybridized triboelectric-electromagnetic nanogenerator and solar cell as a sustainable power unit for self-powered natural disaster monitoring sensor networks
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Wind-driven hybridized triboelectric-electromagnetic nanogenerator and solar cell as a sustainable power unit for self-powered natural disaster monitoring sensor networks

机译:风力驱动的杂交摩擦电磁纳米液体和太阳能电池作为自动自然灾害监测传感器网络的可持续电力单元

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The frequent occurrence of natural disasters is a major threat to the property and casualties of human beings in recent decades. Disaster prone points can be very closely monitored by augmenting the distribution of wireless sensor networks. However, replacing the battery of electronics regularly remains a significant challenge especially in a remote area. In this study, we report a wind-driven hybridized energy harvester which is designed for rotating energy harvesting and can be integrated with WSN technology to develop a self-powered natural disaster monitoring system. In this harvester, the rotator is directly driven by external rotational motion thus can easily hybridize the TENG with eighteen EMGs. Consequently, the fully packaged WH-EH device combining with the water-proof flexible solar cell can be completely isolated from the harsh wilderness environment. The output feature of TENG of high voltage but low current that perfectly compensate for the differing performance of EMG to achieve an excellent output power of the hybrid device with a broad frequency range. Moreover, the WH-EH is capable of lighting hundreds of LEDs and powering small electronics. The quick-acting charging ability of a capacitor by the WH-EH was conducted effectively in experimental tests. Finally, three self-powered sensor systems enabled by a single WH-EH were discussed and demonstrated, including a temperature sensor for forest fire detection, a vibration sensor for earthquake monitoring and a wireless transceiver for alarm information spreading. Obviously, the invention of the hybridized nanogenerator will be of great importance to promote the development of self-powered wireless sensor networks and provide a sustainable power-supply solution to long-term natural disaster monitoring stations in residential or remote areas.
机译:近几十年来频繁发生自然灾害是对人类财产和伤亡的重大威胁。通过增强无线传感器网络的分配,可以非常密切地监控易受灾害点。然而,定期更换电子设备的电池仍然是一个重要的挑战,特别是在偏远地区。在这项研究中,我们报告了一种风力驱动的杂交能收割机,用于旋转能量收集,可以与WSN技术集成,以开发自我驱动的自然灾害监测系统。在这种收割机中,旋转器直接由外部旋转运动驱动,因此可以容易地将腾腾与十八个EMGS杂交。因此,与防水柔性太阳能电池组合的完全包装的WH-EH装置可以完全从恶劣的荒野环境中分离。高电压但低电流的输出特征完美地补偿了EMG的不同性能,实现了具有宽频范围的混合装置的优异输出功率。此外,WH-EH能够点亮数百个LED和供电小电子。在实验测试中有效地进行了WH-EH的电容器的快速充电能力。最后,讨论并演示了由单个WH-EH启用的三种自动传感器系统,包括用于森林火灾检测的温度传感器,用于地震监测的振动传感器和用于报警信息扩展的无线收发器。显然,杂交的纳米液的发明将非常重要,促进自动无线传感器网络的发展,并为住宅或偏远地区的长期自然灾害监测站提供可持续的电源解决方案。

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