用于低频和振幅的电动力谐振能量采集器

S. Bradai, S. Naifar, T. Keutel, O. Kanoun
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引用次数: 13

摘要

由于振动的能量水平,它是为无线传感器供电的合适来源。只有考虑到可用振动参数的适当收割机设计才能达到高能量输出。通常环境振动源具有相对较低的频率和幅度。本文研制了一种新型的低频低幅圆柱型电动力谐振振动变换器。该设计设想了一个固定线圈,以可靠地连接到能源管理电子设备。对于排斥力,提出了磁性弹簧来避免机械弹簧的摩擦和老化效应。这保证了系统的高可靠性和紧凑性。通过有限元建模和实验对设计参数进行了优化。为了验证仿真结果,实现了该变换器的实验装置。对所产生的能量进行了评估。结果表明,在26 Hz的频率激励和1 mm的低振幅振动下,该收割机可产生470 mV的振动。对于功率输出评估,最佳负载电阻接近线圈电阻,等于34 Ω,变流器能够产生0.72 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrodynamic resonant energy harvester for low frequencies and amplitudes
Vibration is a suitable source for powering wireless sensors because of its energy level. A high energy output can be only reached by an appropriate harvester design taking the parameters of the available vibration into account. Very often ambient vibration sources have relative low frequencies and amplitudes. In this paper, a novel cylindrical electrodynamic resonant vibration converter is developed for low frequency and low amplitude. The design envisages a fixed coil to have a reliable connection to energy management electronic. For repulsion forces a magnetic spring is proposed to ovoid friction and aging effects of mechanical springs. This ensures a high reliability and compactness of the system. The design parameters have been optimized by finite element method modeling and by experiments. In order to validate the simulation results, an experimental setup for the converter is realized. An evaluation for the generated energy is also treated. The results show that the harvester is able to generate 470 mV for frequency excitation equal to 26 Hz and a low amplitude vibration equal to 1 mm. For the power output evaluation, the optimal load resistance is close to the coil resistance which is equal to 34 Ω and the converter is able to generate 0.72 mW.
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