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Design and Studies on a Low-Frequency Truss-Based Compressive-Mode Piezoelectric Energy Harvester

机译:基于低频桁架的压缩模式压电能量采集器的设计与研究

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摘要

In this paper, we propose a truss-based compressive-mode piezoelectric energy harvester to harness energy from low frequency vibrations with a wide bandwidth and a high-power output. The design is an integration of mainly three modules: separated excitation mechanism from transduction mechanism for low resonant frequency, truss mechanism for magnification of the applied force onto the piezoelectric element, and amplitude limit mechanism to induce impact forces. We then formulate the harvester as a two-degrees-of-freedom system featured by superposition of harmonic and impact-induced nonlinear responses. Based on our structure design, we fabricate a prototype to conduct experimental studies. The experimental results show that the harvester is capable of harnessing energy efficiently from vibrations at the resonant frequencies of 3.3 and 6.09 Hz. The total bandwidth is expanded to 4.2 Hz owing to the structure nonlinearity and bifurcation. The open circuit voltage reaches 83.3 V and maximum power gets up to 38.2 mW with the matching impedance. Also, the harvester exhibits excellent charging performance in terms of saturated voltage and charging time.
机译:在本文中,我们提出了一种基于桁架的压缩模式压电能量收集器,该能量收集器可以利用低频振动产生的能量来获得宽带宽和高功率输出。该设计主要包括三个模块的集成:激励机制与低共振频率的传导机制分离;桁架机制,用于放大施加到压电元件上的力;以及幅值限制机制,以产生冲击力。然后,我们将收割机公式化为具有谐波和冲击引起的非线性响应叠加的两自由度系统。根据我们的结构设计,我们制作了一个原型来进行实验研究。实验结果表明,收割机能够有效地利用3.3和6.09 Hz共振频率下的振动能量。由于结构的非线性和分叉,总带宽扩展到4.2 Hz。在匹配阻抗的情况下,开路电压达到83.3V,最大功率达到38.2mW。此外,就饱和电压和充电时间而言,收割机还具有出色的充电性能。

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