基于滚动轴承三电纳米发电机的近零静态功率微风唤醒式风速计

IF 7.3 1区 工程技术 Q1 INSTRUMENTS & INSTRUMENTATION
Xianpeng Fu, Zhichao Jiang, Jie Cao, Zefang Dong, Guoxu Liu, Meiling Zhu, Chi Zhang
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引用次数: 0

摘要

风力传感器在环境信息监测中一直发挥着不可替代的作用,人们希望它能以更低的功耗运行,以延长使用寿命。在此,我们提出了一种基于滚动轴承三电纳米发电机(RB-TENG)的微风唤醒风速计(B-WA),其静态功耗极低。B-WA 由两个 RB-TENG、一个自唤醒模块(SWM)、一个信号处理模块(SPM)和一个无线传输单元组成。两个 RB-TENG 用于系统启动和风速感应。一旦环境风速超过 2 米/秒,唤醒 TENG(W-TENG)和 SWM 可在 0.96 秒内唤醒系统。与此同时,SPM 开始根据测量到的 TENG(M-TENG)计算信号频率,以 9.45 Hz/(m/s)的灵敏度监测风速。风停后,SWM 可在 0.52 秒内关闭 B-WA,以减少系统能量损失。在静态待机模式下,B-WA 的工作功率小于 30 nW,可大大延长 B-WA 的使用寿命。通过集成三电设备和滚动轴承,这项工作实现了超低静态功率和自唤醒无线风速监测系统,可预见在远程气象监测、物联网节点等方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A near-zero quiescent power breeze wake-up anemometer based on a rolling-bearing triboelectric nanogenerator

A near-zero quiescent power breeze wake-up anemometer based on a rolling-bearing triboelectric nanogenerator

Wind sensors have always played an irreplaceable role in environmental information monitoring and are expected to operate with lower power consumption to extend service lifetime. Here, we propose a breeze wake-up anemometer (B-WA) based on a rolling-bearing triboelectric nanogenerator (RB-TENG) with extremely low static power. The B-WA consists of two RB-TENGs, a self-waking-up module (SWM), a signal processing module (SPM), and a wireless transmission unit. The two RB-TENGs are employed for system activation and wind-speed sensing. Once the ambient wind-speed exceeds 2 m/s, the wake TENG (W-TENG) and the SWM can wake up the system within 0.96 s. At the same time, the SPM starts to calculate the signal frequency from the measured TENG (M-TENG) to monitor the wind speed with a sensitivity of 9.45 Hz/(m/s). After the wind stops, the SWM can switch off the B-WA within 0.52 s to decrease the system energy loss. In quiescent on-duty mode, the operating power of the B-WA is less than 30 nW, which can greatly extend the service lifetime of the B-WA. By integrating triboelectric devices and rolling bearings, this work has realized an ultralow quiescent power and self-waked-up wireless wind-speed monitoring system, which has foreseeable applications in remote weather monitoring, IoT nodes, and so on.

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来源期刊
Microsystems & Nanoengineering
Microsystems & Nanoengineering Materials Science-Materials Science (miscellaneous)
CiteScore
12.00
自引率
3.80%
发文量
123
审稿时长
20 weeks
期刊介绍: Microsystems & Nanoengineering is a comprehensive online journal that focuses on the field of Micro and Nano Electro Mechanical Systems (MEMS and NEMS). It provides a platform for researchers to share their original research findings and review articles in this area. The journal covers a wide range of topics, from fundamental research to practical applications. Published by Springer Nature, in collaboration with the Aerospace Information Research Institute, Chinese Academy of Sciences, and with the support of the State Key Laboratory of Transducer Technology, it is an esteemed publication in the field. As an open access journal, it offers free access to its content, allowing readers from around the world to benefit from the latest developments in MEMS and NEMS.
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