驻极体
非线性系统
带宽(计算)
能量收集
电容器
物理
微电子机械系统
等效电路
激发
电子工程
惯性
计算机科学
电气工程
能量(信号处理)
拓扑(电路)
控制理论(社会学)
电压
光电子学
工程类
量子力学
电信
人工智能
控制(管理)
作者
Kai Tao,Lihua Tang,Jin Wu,Sun Woh Lye,Honglong Chang,Jianmin Miao
标识
DOI:10.1109/jmems.2018.2792686
摘要
This paper presents an electret-based MEMS energy harvester synergizing the advantages of multi-modal structure and impact mechanism for broad operating bandwidth. The device with a volume of 295 mm 3 comprises an electret-based primary subsystem for power generation and an electrode-free auxiliary subsystem for frequency tuning. The tiny auxiliary subsystem helps to induce close resonances with comparable outputs at low excitations, as well as introduces impact-based nonlinearity to drive the first resonant peak upward and further approach the second one at elevated excitations. The experimental results demonstrate that at an excitation of 12.8 m/ $\text{s}^{2}$ , the 3-dB bandwidth of the first peak is increased from 20.4 to 60.4 Hz and a low frequency ratio of 1.15 between the two peaks is achieved. The two degree-of-freedom resonant structure with impact-based nonlinearity is systematically investigated through an equivalent circuit representation. An electrical equivalent circuit model of the proposed device with impact mechanism is derived. The circuit simulation confirms the nonlinear behavior of the system, and reveals the mechanism of peak shifting and bandwidth enhancing dynamics. [2017-0207]
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