首页> 外文期刊>Nano Energy >Triboelectric-electromagnetic hybrid nanogenerator driven by wind for self-powered wireless transmission in Internet of Things and self-powered wind speed sensor
【24h】

Triboelectric-electromagnetic hybrid nanogenerator driven by wind for self-powered wireless transmission in Internet of Things and self-powered wind speed sensor

机译:摩擦电磁杂交纳米电磁炉由风驱动,用于物联网和自动风速传感器中的自动无线传输

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years, as the world has been warming, frequent natural disasters are posing a great threat to humans. By combining 5G technology with the Internet of Things (IoT) concept and increasing the placement of wireless sensor networks, disaster-prone points can be closely monitored. However, regular replacement of the traditional chemical batteries for devices that are a part of the developing IoT remains a significant challenge, especially in remote areas. In this article, we propose and report a hybrid energy harvester used in wind energy harvesting. The device consists of a rotating body and a sliding body. The electromagnetic generators (EMGs) in the rotating body and the triboelectric nanogenerators (TENGs) on the sliding body form the entirety of the power generating mechanism, and all generated units are completely sealed in the device box, which is isolated from the harsh environment. This paper not only systematically studies the influence of dielectric material types and sizes on the output performance of TENGs, but also studies the output performance of this device under different wind speeds. The results show that when the wind speed is not less than 4 m/s, the energy harvester can convert wind energy into electricity. The output performance of TENGs and EMGs increases with increasing wind speed, and the voltages of the TENG and the EMG are 416 V and 63.2 V at the 15 m/s wind speed, respectively. When the wind speed is 9 m/s, the maximum output power of TENG and EMG are 0.36 mW and 18.6 mW, respectively. The device can charge a capacitor of 1000 mu F to 19.8 V in 30s. By supplying power to electronic devices and wireless monitoring systems including temperature sensors and humidity sensors, it is shown that the creation and implementation of such an energy harvester is practical and has a significant impact on promoting the development of IoT. Meanwhile, it can be used as a self-powered sensor to detected wind speed by analyzing the frequency of TENG output voltage.
机译:近年来,随着世界一直在变暖,频繁的自然灾害对人类构成了很大的威胁。通过将5G技术与事物互联网(IOT)的概念组合并增加无线传感器网络的放置,可以密切监视易受灾害点。但是,定期更换传统化学电池,用于开发IOT的一部分的设备仍然是一个重大挑战,特别是在偏远地区。在本文中,我们提出并举报了一种用于风能收割的混合能源收割机。该装置包括旋转体和滑动体。旋转体中的电磁发生器(EMG)和滑动体上的摩擦纳米液(TENGS)形成全部发电机构,并且所有产生的单元在设备盒中完全密封,从恶劣的环境中分离。本文不仅系统地研究了介电材料类型的影响和尺寸对Tengs的输出性能,还在不同风速下研究了该装置的输出性能。结果表明,当风速不小于4米/米时,能源收割机可以将风能转化为电力。 TENGS和EMG的输出性能随着风速的增加而增加,腾腾和EMG的电压分别为15米/秒的风速为416 V和63.2V。当风速为9米/秒时,Teng和EMG的最大输出功率分别为0.36 mW和18.6兆瓦。该装置可以在30秒内为1000μmf至19.8V的电容器充电。通过向电子设备和无线监控系统提供电力,包括温度传感器和湿度传感器,表明这种能源收割机的创建和实施是实用的,并且对促进IOT的发展具有显着影响。同时,它可以用作自动传感器,通过分析腾输出电压的频率来检测风速。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号