摩擦电效应
全向天线
材料科学
风速
风力发电
航空航天工程
汽车工程
声学
计算机科学
电气工程
工程类
气象学
物理
天线(收音机)
电信
复合材料
作者
Zhihong Wang,Kuankuan Wang,Yixin Liu,Xiang Guan,Zhipeng Pan,Yongming Yao,Tianyu Li
标识
DOI:10.1021/acsami.5c01043
摘要
Unmanned aerial vehicles (UAVs) have transformed sectors, such as agriculture and logistics, requiring accurate environmental sensing for optimal functionality. Among various environmental factors, wind speed and direction are vital to flight stability and energy efficiency. However, existing UAV anemometer technologies face challenges, including large size, high power consumption, and complex integration. In this study, a novel wind speed and direction (WSD) sensor, referred to as WSD-TENG, is introduced based on the principles of triboelectric nanogenerators (TENGs). The WSD-TENG consists of a thin-film TENG integrated with a wind vane for wind speed detection and a disk-shaped TENG for monitoring wind direction. An extensive evaluation of the structural parameters and output performance of the WSD-TENG demonstrates its ability to function across wind speeds from 2.6 to 30.0 m/s with a 5° resolution in the wind direction, showing high stability. The WSD-TENG exhibits a linear relationship between wind speed and output voltage frequency, with a goodness of fit of 0.9995, and proves to have strong long-term reliability. Additionally, testing under simulated environmental conditions validates its dependability in various settings. A WSD-TENG-compatible signal processing module has also been developed for integration with UAVs, enabling its application in practical UAV operations.
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