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Twenty-Eight Orders of Parametric Resonance in a Microelectromechanical Device for Multi-band Vibration Energy Harvesting

机译:用于多频带振动能量收集的微机电装置中的二十八个参数共振。

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摘要

This paper contends to be the first to report the experimental observation of up to 28 orders of parametric resonance, which has thus far only been envisioned in the theoretical realm. While theory has long predicted the onset of n orders of parametric resonance, previously reported experimental observations have been limited up to about the first 5 orders. This is due to the rapid narrowing nature of the frequency bandwidth of the higher instability intervals, making practical accessibility increasingly more difficult. Here, the authors have experimentally confirmed up to 28 orders of parametric resonance in a micromachined membrane resonator when electrically undamped. While the implication of this finding spans across the vibration dynamics and transducer application spectrum, the particular significance of this work is to broaden the accumulative operational frequency bandwidth of vibration energy harvesting for enabling self-powered microsystems. Up to 5 orders were recorded when driven at 1.0 g of acceleration across a matched load of 70 kΩ. With a natural frequency of 980 Hz, the fundamental mode direct resonance had a −3 dB bandwidth of 55 Hz, in contrast to the 314 Hz for the first order parametric resonance; furthermore, the half power bands of all 5 orders accumulated to 478 Hz.
机译:本文争辩成为第一个报告高达28阶参量共振的实验观察的报告,到目前为止,这只是在理论领域中才想到的。尽管理论上早就预测了n阶参量共振的发生,但先前报道的实验观察仅限于前5阶。这是由于较高的不稳定性间隔的频率带宽的快速变窄性质,使得实际可访问性越来越困难。在这里,作者已经在实验上证实了在未电阻尼的情况下,微机械膜谐振器中多达28个阶的参数谐振。尽管这一发现的涵义跨越了振动动力学和换能器应用范围,但这项工作的特殊意义是拓宽了振动能量收集的累积工作频率带宽,以实现自供电的微系统。在70kΩ的匹配负载下以1.0 g的加速度驱动时,最多记录了5个订单。在自然频率为980 Hz的情况下,与一阶参量共振的314 Hz相比,基本模式直接共振的−3 dB带宽为55 Hz。此外,所有5个阶的一半功率带累计到478 Hz。

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