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Modeling and Experiment of a V-Shaped Piezoelectric Energy Harvester

机译:V形压电能量收割机的建模与实验

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摘要

Vibration-based energy harvesting technology is the most promising method to solve the problems of self-powered wireless sensor nodes, but most of the vibration-based energy harvesters have a rather narrow operation bandwidth and the operation frequency band is not convenient to adjust when the ambient frequency changes. Since the ambient vibration may be broadband and changeable, a novel V-shaped vibration energy harvester based on the conventional piezoelectric bimorph cantilevered structure is proposed, which successfully improves the energy harvesting efficiency and provides a way to adjust the operation frequency band of the energy harvester conveniently. The electromechanical coupling equations are established by using Euler-Bernoulli equation and piezoelectric equation, and then the coupled circuit equation is derived based on the series connected piezoelectric cantilevers and Kirchhoff's laws. With the above equations, the output performances of V-shaped structure under different structural parameters and load resistances are simulated and discussed. Finally, by changing the angle θ between two piezoelectric bimorph beams and the load resistance, various comprehensive experiments are carried out to test the performance of this V-shaped energy harvester under the same excitation. The experimental results show that the V-shaped energy harvester can not only improve the frequency response characteristic and the output performance of the electrical energy, but also conveniently tune the operation bandwidth; thus it has great application potential in actual structure health monitoring under variable working condition.
机译:基于振动的能量收集技术是解决自动无线传感器节点问题最有希望的方法,但大多数基于振动的能量收割机具有相当窄的操作带宽,操作频率频段不方便调整环境频率变化。由于环境振动可以是宽带和可变的,提出了一种基于传统压电双芯片悬臂结构的新型V形振动能量收割机,其成功地提高了能量收集效率并提供了调整能量收割机的操作频带的方法方便地。通过使用Euler-Bernoulli方程和压电方程建立机电耦合方程,然后基于串联的压电悬臂和Kirchhoff的定律导出耦合电路方程。利用上述等式,模拟并讨论了不同结构参数和负载电阻下的V形结构的输出性能。最后,通过改变两个压电双压电光束和负载电阻之间的角度θ,进行各种综合实验,以测试在相同的激励下该V形能量收割机的性能。实验结果表明,V形能源收割机不仅可以提高频率响应特性和电能的输出性能,还可以方便地调整操作带宽;因此,在可变工作状态下,它在实际结构健康监测中具有很大的应用潜力。

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