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基于正交磁耦合双悬臂梁的宽带振动能量采集器的实验研究

Experimental Study of a Broadband Vibration Energy Harvester Based on Orthogonal Magnetically Coupled Double Cantilever Beam.

作者信息

Feng Yanhao, Wang Jianhua, Chen Xiangye, Liu Peng

机构信息

College of Aeronautics and Astronautics, Taiyuan University of Technology, Taiyuan 030024, China.

出版信息

Micromachines (Basel). 2025 Jun 19;16(6):722. doi: 10.3390/mi16060722.

Abstract

: The aim of this study is to achieve automated energy capture and charging for the ADXL355 accelerometer, enhance the vibration energy collection efficiency, and widen the energy trapping frequency band of a system in a working environment for bridge health state detection. : A vibration energy harvester based on a magnetic coupling cantilever beam in an orthogonal direction was proposed. The harvester works by adjusting the angle and magnetic spacing between the two cantilever-beam piezoelectric oscillators, enabling the oscillators to produce large-scale and stable vibrations when excited by an external broadband vibration source. : Sinusoidal frequency sweep experiments showed that, under an excitation amplitude of 0.2 g, the proposed broadband vibration energy harvester based on orthogonal magnetic coupling double cantilever beams achieved the best energy harvesting performance when the magnetic angle of the double cantilever beam system was 130°, and the radius was 16 mm. In the frequency range of 5-20 Hz, the system can effectively capture higher effective voltages across all frequency bands, with a total captured voltage value of approximately 15.3 V. Compared with the control group, the system's energy harvesting capacity under this working condition increases by 770%. Additionally, the effective frequency band of the system was broadened by 3.7 Hz. : Unlike previous studies, which often limited the angles of the magnetic fields generated by the magnets at the ends of piezoelectric beams to specific values, this study explores the influence of rotating these magnetic fields to general angles on the working frequency band of the structure. The findings provide a new perspective and theoretical basis for the optimal design of broadband vibration energy harvesters.

摘要

本研究的目的是实现ADXL355加速度计的自动能量捕获和充电,提高振动能量收集效率,并在桥梁健康状态检测的工作环境中拓宽系统的能量俘获频带。

提出了一种基于正交方向磁耦合悬臂梁的振动能量采集器。该采集器通过调整两个悬臂梁压电振荡器之间的角度和磁间距来工作,使振荡器在外部宽带振动源激发时能够产生大规模且稳定的振动。

正弦扫频实验表明,在0.2 g的激励幅值下,所提出的基于正交磁耦合双悬臂梁的宽带振动能量采集器在双悬臂梁系统的磁角为130°且半径为16 mm时,实现了最佳的能量采集性能。在5 - 20 Hz的频率范围内,该系统能够在所有频带有效地捕获更高的有效电压,总捕获电压值约为15.3 V。与对照组相比,该工况下系统的能量采集能力提高了770%。此外,系统的有效频带拓宽了3.7 Hz。

与以往研究通常将压电梁端部磁体产生的磁场角度限制在特定值不同,本研究探索了将这些磁场旋转到一般角度对结构工作频带的影响。研究结果为宽带振动能量采集器的优化设计提供了新的视角和理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec4c/12194980/8d2020b12d5d/micromachines-16-00722-g001.jpg

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