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Development and Validation of an Enhanced Coupled-Field Model for PZT Cantilever Bimorph Energy Harvester

机译:PZT悬臂双压电晶片能量收集器增强耦合场模型的开发和验证

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摘要

The power source with the limited life span has motivated the development of the energy harvesters that can scavenge the ambient environment energy and convert it into the electrical energy. With the coupled field characteristics of structure to electricity, piezoelectric energy harvesters are under consideration as a means of converting the mechanical energy to the electrical energy, with the goal of realizing completely self-powered sensor systems. In this paper, two previous models in the literatures for predicting the open-circuit and close-circuit voltages of a piezoelectric cantilever bimorph (PCB) energy harvester are first described, that is, the mechanical equivalent spring mass-damper model and the electrical equivalent circuit model. Then, the development of an enhanced coupled field model for the PCB energy harvester based on another previous model in the literature using a conservation of energy method is presented. Further, the laboratory experiments are carried out to evaluate the enhanced coupled field model and the other two previous models in the literatures. The comparison results show that the enhanced coupled field model can better predict the open-circuit and close-circuit voltages of the PCB energy harvester with a proof mass bonded at the free end of the structure in order to increase the energy-harvesting level of the system.
机译:使用寿命有限的电源推动了能量收集器的发展,该能量收集器可以清除周围环境中的能量并将其转换为电能。考虑到结构与电的耦合场特征,正在考虑将压电能量收集器作为将机械能转换为电能的手段,以实现完全自供电的传感器系统。本文首先介绍了文献中用于预测压电悬臂双压电晶片(PCB)能量收集器开路和闭路电压的两个先前模型,即机械等效弹簧质量阻尼器模型和电气等效模型。电路模型。然后,提出了使用能量守恒方法基于文献中的另一个先前模型开发用于PCB能量收集器的增强耦合场模型的方法。此外,进行实验室实验以评估文献中的增强耦合场模型和其他两个先前模型。比较结果表明,增强的耦合场模型可以更好地预测PCB能量收集器的开路和闭路电压,并在结构的自由端结合有质量保证物,以提高电路板的能量收集水平。系统。

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