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基于压电薄膜平面阵列的振动能量转换电源

Vibration Energy Conversion Power Supply Based on the Piezoelectric Thin Film Planar Array.

作者信息

Wang Bo, Lan Dun, Zeng Fanyang, Li Wei

机构信息

State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.

出版信息

Sensors (Basel). 2022 Nov 4;22(21):8506. doi: 10.3390/s22218506.

Abstract

Vibration energy harvesting has received much attention as a new type of power solution for low-power micro/nano-devices. However, VEH (vibration energy harvester) based on PVDF (polyvinylidene fluoride) piezoelectric materials have a low output power and energy conversation efficiency due to the relatively low piezoelectric constant, coupling coefficient, and dielectric constant. For this reason, we design a vibration energy conversion power supply, which consists of a VEH with a PVDF piezoelectric thin film planar array vibration structure and an energy harvesting circuit for regulating the electric energy of multiple sources. Furthermore, our solution was validated by simulations of structural dynamics in COMSOL and equivalent circuits model in Multisim. From the circuitry simulation results, the output current and the charging period increase and decrease, doubling, respectively, for each doubling of the number of array groups of films. Moreover, the solid mechanics simulation results show that the planar array structure makes the phase and amplitude of the input vibration waves as consistent as possible so that the same theoretical enhancement effect of the circuitry model is achieved. An identical experimental test was implemented with vibration conditions of 75 Hz-2.198 g. The fabricated harvester quickly charged the 22 V-0.022 F ultracapacitor bank to 5 V in 24 min. The maximum open circuit voltage and output power, respectively, were 10.4 V and 0.304 mW. This maximum charging power was 11.69 times higher than that of a single film. This special power supply can replace batteries to power low-power electronics deployed in vibrating environments, thus reducing the maintenance costs of equipment and environmental pollution rates.

摘要

振动能量采集作为一种用于低功耗微纳器件的新型电源解决方案,已受到广泛关注。然而,基于聚偏氟乙烯(PVDF)压电材料的振动能量采集器(VEH)由于其压电常数、耦合系数和介电常数相对较低,输出功率和能量转换效率也较低。因此,我们设计了一种振动能量转换电源,它由一个具有PVDF压电薄膜平面阵列振动结构的VEH和一个用于调节多源电能的能量采集电路组成。此外,我们的解决方案通过COMSOL中的结构动力学模拟和Multisim中的等效电路模型进行了验证。从电路模拟结果来看,对于薄膜阵列组数量每增加一倍,输出电流和充电周期分别增加和减少一倍。而且,固体力学模拟结果表明,平面阵列结构使输入振动波的相位和幅度尽可能一致,从而实现了与电路模型相同的理论增强效果。在75 Hz - 2.198 g的振动条件下进行了相同的实验测试。制作的采集器在24分钟内将22 V - 0.022 F的超级电容器组快速充电至5 V。最大开路电压和输出功率分别为10.4 V和0.304 mW。这个最大充电功率比单膜的高出11.69倍。这种特殊电源可以替代电池为部署在振动环境中的低功耗电子设备供电,从而降低设备维护成本和环境污染率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5758/9654093/440d1567adc0/sensors-22-08506-g001.jpg

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