Chen Jun, Liu Xiangfu, Wang Hengyang, Wang Sheng, Guan Mingjie
Department of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, China.
Micromachines (Basel). 2022 Feb 28;13(3):388. doi: 10.3390/mi13030388.
Rotational energy harvesting technology has attracted more and more attention recently. This paper presents a piezoelectric rotational energy harvester that can be mounted with an offset distance from the rotation center. The piezoelectric energy harvester is designed to be dynamically excited by the force due to gravity, which causes the piezoelectric cantilever beams in the harvester to vibrate periodically as the harvester rotates. A novel design of the harvester structure with a hollow mass is proposed and analyzed in this paper. Experiments were performed to investigate the design and analysis. A power output of 1062308 μW can be achieved at the rotating frequencies of 0.7914 Hz with a piezoelectric cantilever beam in the prototyped energy harvester. Results showed that the prototyped harvester can be mounted on a rotating wheel hub and output sufficient power in a wide frequency range for wireless monitoring sensors.
旋转能量采集技术近年来越来越受到关注。本文提出了一种压电旋转能量采集器,它可以安装在与旋转中心有一定偏移距离的位置。该压电能量采集器设计为由重力产生的力进行动态激励,这使得采集器旋转时,其中的压电悬臂梁会周期性振动。本文提出并分析了一种带有空心质量块的采集器结构的新颖设计。进行了实验以研究该设计与分析。在原型能量采集器中使用压电悬臂梁时,在0.79至14Hz的旋转频率下可实现106~2308μW的功率输出。结果表明,该原型采集器可以安装在旋转轮毂上,并在很宽的频率范围内为无线监测传感器输出足够的功率。