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使用耦合压电电路有限元方法对直接连接到负载电阻器的压电能量收集装置的功率输出进行分析。

Analyses of power output of piezoelectric energy-harvesting devices directly connected to a load resistor using a coupled piezoelectric-circuit finite element method.

作者信息

Zhu Meiling, Worthington Emma, Njuguna James

机构信息

Department of Materials, Cranfield University, Bedfordshire, UK.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Jul;56(7):1309-18. doi: 10.1109/TUFFC.2009.1187.

DOI:10.1109/TUFFC.2009.1187
PMID:19574142
Abstract

This paper presents, for the first time, a coupled piezoelectric-circuit finite element model (CPC-FEM) to analyze the power output of a vibration-based piezoelectric energy-harvesting device (EHD) when it is connected to a load resistor. Special focus is given to the effect of the load resistor value on the vibrational amplitude of the piezoelectric EHD, and thus on the current, voltage, and power generated by the device, which are normally assumed to be independent of the load resistor value to reduce the complexity of modeling and simulation. The presented CPC-FEM uses a cantilever with a sandwich structure and a seismic mass attached to the tip to study the following characteristics of the EHD as a result of changing the load resistor value: 1) the electric outputs: the current through and voltage across the load resistor; 2) the power dissipated by the load resistor; 3) the displacement amplitude of the tip of the cantilever; and 4) the shift in the resonant frequency of the device. It is found that these characteristics of the EHD have a significant dependence on the load resistor value, rather than being independent of it as is assumed in most literature. The CPC-FEM is capable of predicting the generated output power of the EHD with different load resistor values while simultaneously calculating the effect of the load resistor value on the displacement amplitude of the tip of the cantilever. This makes the CPC-FEM invaluable for validating the performance of a designed EHD before it is fabricated and tested, thereby reducing the recurring costs associated with repeat fabrication and trials. In addition, the proposed CPC-FEM can also be used for producing an optimized design for maximum power output.

摘要

本文首次提出了一种耦合压电 - 电路有限元模型(CPC - FEM),用于分析基于振动的压电能量收集装置(EHD)连接到负载电阻时的功率输出。特别关注负载电阻值对压电EHD振动幅度的影响,进而对该装置产生的电流、电压和功率的影响,通常为了降低建模和仿真的复杂性,假定这些量与负载电阻值无关。所提出的CPC - FEM使用具有夹心结构的悬臂梁以及附着在其尖端的质量块,以研究由于改变负载电阻值而导致的EHD的以下特性:1)电输出:通过负载电阻的电流和负载电阻两端的电压;2)负载电阻消耗的功率;3)悬臂梁尖端的位移幅度;4)装置谐振频率的偏移。研究发现,EHD的这些特性对负载电阻值有显著依赖性,而不像大多数文献中所假定的那样与负载电阻值无关。CPC - FEM能够预测不同负载电阻值下EHD产生的输出功率,同时计算负载电阻值对悬臂梁尖端位移幅度的影响。这使得CPC - FEM在验证设计的EHD在制造和测试之前的性能方面具有极高价值,从而降低与重复制造和试验相关的反复成本。此外,所提出的CPC - FEM还可用于生成最大功率输出的优化设计。

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Analyses of power output of piezoelectric energy-harvesting devices directly connected to a load resistor using a coupled piezoelectric-circuit finite element method.使用耦合压电电路有限元方法对直接连接到负载电阻器的压电能量收集装置的功率输出进行分析。
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