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低频蜿蜒式压电振动能量收集器。

Low-frequency meandering piezoelectric vibration energy harvester.

机构信息

School of Electrical and Computer Engineering and the Birck Nanotechnology Center, Purdue University, West Lafayette, IN, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2012 May;59(5):846-58. doi: 10.1109/TUFFC.2012.2269.

Abstract

The design, fabrication, and characterization of a novel low-frequency meandering piezoelectric vibration energy harvester is presented. The energy harvester is designed for sensor node applications where the node targets a width-to-length aspect ratio close to 1:1 while simultaneously achieving a low resonant frequency. The measured power output and normalized power density are 118 μW and 5.02 μW/mm(3)/g(2), respectively, when excited by an acceleration magnitude of 0.2 g at 49.7 Hz. The energy harvester consists of a laser-machined meandering PZT bimorph. Two methods, strain-matched electrode (SME) and strain-matched polarization (SMP), are utilized to mitigate the voltage cancellation caused by having both positive and negative strains in the piezoelectric layer during operation at the meander's first resonant frequency. We have performed finite element analysis and experimentally demonstrated a prototype harvester with a footprint of 27 x 23 mm and a height of 6.5 mm including the tip mass. The device achieves a low resonant frequency while maintaining a form factor suitable for sensor node applications. The meandering design enables energy harvesters to harvest energy from vibration sources with frequencies less than 100 Hz within a compact footprint.

摘要

提出了一种新型低频蜿蜒压电振动能量收集器的设计、制造和特性。该能量收集器专为传感器节点应用而设计,其中节点的目标是长宽比接近 1:1,同时实现低谐振频率。当在 49.7 Hz 时受到 0.2 g 的加速度激励时,其测量的功率输出和归一化功率密度分别为 118 μW 和 5.02 μW/mm(3)/g(2)。该能量收集器由激光加工的蜿蜒 PZT 双压电晶片组成。利用应变匹配电极 (SME) 和应变匹配极化 (SMP) 两种方法来减轻在蜿蜒的第一个谐振频率下操作时在压电层中同时存在正应变和负应变引起的电压抵消。我们进行了有限元分析并实验证明了一个原型收集器,其足迹为 27 x 23 mm,高度为 6.5 mm,包括尖端质量。该器件实现了低谐振频率,同时保持了适合传感器节点应用的外形尺寸。蜿蜒设计使能量收集器能够从紧凑尺寸内频率小于 100 Hz 的振动源中收集能量。

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