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基于定制算法建模和可测量特性的压电能量收集器机电耦合测定

On Mechanical and Electrical Coupling Determination at Piezoelectric Harvester by Customized Algorithm Modeling and Measurable Properties.

作者信息

Perez-Alfaro Irene, Gil-Hernandez Daniel, Murillo Nieves, Bernal Carlos

机构信息

TECNALIA, Basque Research and Technology Alliance (BRTA), P° Mikeletegi 7, E-20009 Donostia-San Sebastian, Spain.

Electronics Engineering and Communication Department, Universidad de Zaragoza, Pedro Cerbuna 12, E-50009 Zaragoza, Spain.

出版信息

Sensors (Basel). 2022 Apr 17;22(8):3080. doi: 10.3390/s22083080.

Abstract

Piezoelectric harvesters use the actuation potential of the piezoelectric material to transform mechanical and vibrational energies into electrical power, scavenging energy from their environment. Few research has been focused on the development and understanding of the piezoelectric harvesters from the material themselves and the real piezoelectric and mechanical properties of the harvester. In the present work, the authors propose a behavior real model based on the experimentally measured electromechanical parameters of a homemade PZT bimorph harvester with the aim to predict its V output. To adjust the harvester behavior, an iterative customized algorithm has been developed in order to adapt the electromechanical coupling coefficient, finding the relationship between the harvester actuator and generator behavior. It has been demonstrated that the harvester adapts its elongation and its piezoelectric coefficients combining the effect of the applied mechanical strain and the electrical behavior as a more realistic behavior due to the electromechanical nature of the material. The complex rms voltage output of the homemade bimorph harvester in the frequency domain has been successfully reproduced by the proposed model. The Behavior Real Model, BRM, developed could become a powerful tool for the design and manufacturing of a piezoelectric harvester based on its customized dimensions, configuration, and the piezoelectric properties of the smart materials.

摘要

压电能量收集器利用压电材料的驱动电势将机械能和振动能转化为电能,从周围环境中获取能量。很少有研究关注从材料本身以及能量收集器的实际压电和机械性能方面来开发和理解压电能量收集器。在当前工作中,作者基于对自制的压电陶瓷双压电晶片能量收集器的实验测量机电参数,提出了一个行为真实模型,旨在预测其电压输出。为了调整能量收集器的行为,开发了一种迭代定制算法,以调整机电耦合系数,找出能量收集器致动器和发电机行为之间的关系。结果表明,由于材料的机电特性,能量收集器结合施加的机械应变和电行为的影响来调整其伸长和压电系数,呈现出更真实的行为。所提出的模型成功再现了自制双压电晶片能量收集器在频域中的复杂均方根电压输出。所开发的行为真实模型(BRM)可能会成为一种强大的工具,用于基于其定制尺寸、配置以及智能材料的压电特性来设计和制造压电能量收集器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c59d/9029769/a53e081bf566/sensors-22-03080-g001.jpg

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