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Modeling and simulation of MEMS-based PZT beam array vibration energy harvester for high voltage output

机译:基于MEMS的PZT梁阵列振动能量采集器的高压输出建模与仿真

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摘要

Piezoelectric vibration energy harvester as an autonomous power source for various types of sensors, actuators and MEMS devices has been investigated over the last decade. Traditional MEMS-based PZT single beam vibration energy harvester has low voltage output (usually less than 1 V) which cause rectifier circuit to consume most of power or turn off in practical applications. In this paper, to improve the voltage output as well as ensure high power output of the MEMS-based PZT vibration energy harvester, a PZT beam array configuration is proposed. Based on Hamilton's principle and Euler-Bernoulli beam theory, mathematical model for the proposed vibration energy harvester is established, and then the model is verified through finite element model implemented by program ANSYS. Both mathematical model and ANSYS simulation show that the voltage output of the proposed vibration energy harvester is 5 times of the traditional vibration energy harvester and the mathematical model also show that the power output of the proposed vibration energy harvester is the same as the traditional vibration energy harvester. From the mathematical model, the voltage output of the proposed vibration energy harvester increase linearly with the total number of the beams.
机译:在过去的十年中,已经研究了压电振动能量收集器作为用于各种类型的传感器,执行器和MEMS设备的自主电源。传统的基于MEMS的PZT单束振动能量采集器具有低电压输出(通常小于1 V),这会导致整流器电路消耗大部分功率或在实际应用中关闭。在本文中,为了提高基于MEMS的PZT振动能量采集器的电压输出并确保高功率输出,提出了一种PZT梁阵列配置。基于汉密尔顿原理和欧拉-伯努利梁理论,建立了所提出的振动能量收集器的数学模型,然后通过程序ANSYS实现的有限元模型对该模型进行了验证。数学模型和ANSYS仿真均表明,所提出的振动能量采集器的电压输出是传统振动能量采集器的5倍,数学模型也表明所提出的振动能量采集器的功率输出与传统振动能量相同收割机。从数学模型来看,所提出的振动能量收集器的电压输出随光束总数线性增加。

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