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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Efficient Broadband Vibration Energy Harvesting Using Multiple Piezoelectric Bimorphs
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Efficient Broadband Vibration Energy Harvesting Using Multiple Piezoelectric Bimorphs

机译:使用多重压电双芯片的高效宽带振动能量收获

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摘要

This paper presents complete nonlinear electromechanical models for energy harvesting devices consisting of multiple piezoelectric bimorphs (PBs) connected in parallel and series, for the first time. The proposed model is verified against available experimental results for a specific case. The piezoelectric and beam constitutive equations and different circuit equations are utilized to derive the complete nonlinear models for series and parallel connections of the PBs as well as those of piezoelectric layers in each bimorph, i.e., four nonlinear models in total. A multi-modal Galerkin approach is used to discretize these nonlinear electromechanical models. The resultant high-dimensional set of equations is solved utilizing a highly optimized and efficient numerical continuation code. Examining the system behavior shows that the optimum load resistance for an energy harvester array of 4 PBs connected in parallel is almost 4% of that for the case with PBs connected in series. It is shown an energy harvesting array of 8 PBs could reach a bandwidth of 14 Hz in low frequency range, i.e., 20-34 Hz. Compared with an energy harvester with 1 PB, it is shown that the bandwidth can be increased by more than 300% using 4 PBs and by more than 500% using 8 PBs. Additionally, the drawbacks of a multi-PB energy harvesting device are identified and design enhancements are proposed to improve the efficiency of the device.
机译:本文介绍了一个完整的非线性机电机型,用于能量收集装置,该模型由并联连接的多个压电双芯片(PBS)组成,第一次连接。拟议的模型针对特定情况的可用实验结果验证。压电和光束本构方程和不同的电路方程用于导出PBS的串联和并联连接的完整非线性模型以及每个双芯片中的压电层,即总共四个非线性模型。多模态Galerkin方法用于离散化这些非线性机电模型。利用高度优化和有效的数值延续代码来解决所得到的高维等式。检查系统行为表明,对于串联连接的PBS连接的并联的4 PBS的能量收割机阵列的最佳负载电阻几乎是4%的案例。示出了8个PBS的能量收集阵列可以在低频范围内达到14Hz的带宽,即20-34 Hz。与具有1pb的能量收割机相比,显示使用4 PBS的带宽可以增加300%,使用8 PBS超过500%。另外,鉴定了多Pb能量收集装置的缺点,并且提出了设计增强以提高设备的效率。

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