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首页> 外文期刊>Journal of intelligent material systems and structures >Modeling and Comparison of Bimorph Power Harvesters with Piezoelectric Elements Connected in Parallel and Series
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Modeling and Comparison of Bimorph Power Harvesters with Piezoelectric Elements Connected in Parallel and Series

机译:压电元件并联串联的双压电晶片集电器的建模与比较

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摘要

Power harvesting devices are designed to convert the ambient energy surrounding a system to usable electric energy. The strong desire to create self-powered systems, which do not rely on traditional energy sources such as electrochemical batteries has led to the rapid growth of this field. One type of energy harvesting is the use of piezoelectric materials to directly transform ambient vibration to electrical energy. In the majority of applications the piezoelectric is configured as a bimorph bender, where the two patches of piezoceramic material can be electrically connected in either series or parallel. A reduced model will be used here to develop a set of closed form solutions to the power harvesting performance of the system based on the electrical connection of the piezoelectrics. It will be theoretically and experimentally shown that the maximum power output and efficiency is independent of the electrical connection. However, the voltage (and current) outputs between a series and parallel conditions are related by a factor of two with a symmetric system. Additionally, a critical impedance will be derived to serve as a criterion on selecting the appropriate electrical connection between the piezoelectrics to tune the systems performance based on the impedance of external circuitry.
机译:功率收集设备旨在将系统周围的环境能量转换为可用电能。建立不依靠传统能源(例如电化学电池)的自供电系统的强烈愿望导致了该领域的快速发展。一种能量收集方式是使用压电材料将环境振动直接转换为电能。在大多数应用中,压电体被配置为双压电晶片弯曲机,其中两个压电陶瓷材料片可以串联或并联电连接。此处将使用简化模型来基于压电的电连接为系统的功率收集性能开发一套封闭形式的解决方案。从理论和实验上将显示最大功率输出和效率与电连接无关。但是,对于对称系统,串联和并联条件之间的电压(和电流)输出之间的关系是2。另外,将得出临界阻抗,以作为选择压电元件之间的适当电连接以基于外部电路的阻抗来调整系统性能的标准。

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