新型双叉压电能量采集器特性分析

Guogong Wang, Jun Xu, Fuguo Yi, Yongqin Zhang, Peng Wang, Yunyue Cui, Bing Jiang
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引用次数: 0

摘要

随着微机电系统(MEMS)技术的成熟,各种电子产品进入了集成化、小型化、低功耗的时代。传统的电池供电方式制约了电子产品的发展。振动能量收集是最有前途的解决方案之一。由于正常情况下的振动频率在1-100Hz左右,因此对压电收割机的谐振频率要求较低。基于压电效应,研究了一种新型双叉压电能量采集器(DFPEH)的特性。在有限元分析软件ANSYS中建立了DFPEH的模型,并依次进行了相应的静力分析、模态分析、谐波响应分析。结果表明,该收割机前三阶共振频率分别为21Hz、47Hz和91Hz,适用于低频振动环境。一阶谐振频率与二阶谐振频率之间的频率间隙为26Hz。在加速度值为9.9m/s2、阻尼系数为0.025的条件下,DFPEH固定端一阶谐振频率的3dB带宽为8Hz。因此,DFPEH显示出卓越的宽带特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristic analysis of novel Double-Fork piezoelectric energy harvester
With maturity of micro-electro-mechanical system (MEMS) technology, varieties of electronic products have entered into the era of integration, miniaturization and low power consumption. It is noted that the traditional battery power supply method restricted the development of electronic products. Vibration energy harvesting is one of the most promising solutions. Because the vibration frequency in normal circumstance is about 1–100Hz, the lower resonant frequency of piezoelectric harvester is demanded. Based on the piezoelectric effect, the characteristics of a novel kind of Double-Fork piezoelectric energy harvester (DFPEH) was studied. A model of the DFPEH was built in the finite element analysis software ANSYS, and the corresponding static analysis, modal analysis, harmonic response analysis were made sequentially. Results show that the first three order resonance frequencies of the harvester are 21Hz, 47Hz and 91Hz separately, which are suitable for low-frequency vibration environment. The frequency gap between the first-order resonant frequency and the second-order resonant frequency is 26Hz. Besides, the 3dB bandwidth of the first-order resonant frequency is 8Hz under condition of acceleration value 9.9m/s2 and the damping factor 0.025, which is applied on the fixed end of the DFPEH. Consequently, the DFPEH has shown the distinguished broadband characteristic.
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