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Drastic bandwidth enhancement of bistable energy harvesters: Study of subharmonic behaviors and their stability robustness

机译:双稳态能量采集器的大幅度带宽增强:次谐波行为及其稳定性鲁棒性的研究

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摘要

In order to provide a serious alternative to chemical batteries for the energy supply of isolated sensors, bistable generators have been enthusiastically highlighted in recent years for their ability to harvest vibration energy over a wider frequency range compared to linear generators. Nevertheless, these bistable harvesters are generally characterized through a frequency sweep which does not reveal all the steady-state behaviors they can reach and therefore their full energy harvesting potential. Among such behaviors, subharmonic motions are hidden by this classical characterization and therefore had not received a lot of attention. This study proposes an original complete analytical analysis of subharmonic orbits for energy harvesting to predict their contribution to the global bandwidth of bistable generators. In addition, a new criterion, referred as stability robustness, is introduced to estimate the sensitivity of those behaviors to disturbances of different levels, allowing to finely and accurately estimate suitable behaviors for energy harvesting purposes in realistic conditions (behaviors easy to reach and maintain in time). Experimental results conducted with a buckled beam based electromagnetic generator confirm the relevance of this criterion showing good agreement with the analytical predictions. Subharmonic behaviors finally appear, both theoretically and experimentally, to be of significant interest, as exploiting them leads to a180% increase of the global operating frequency range of the considered bistable energy harvester, for which more than100 µW are generated on a70 Hz bandwidth at0.5 g.
机译:为了给化学电池提供一种可靠的替代产品,用于隔离传感器的能量供应,近年来,与线性发电机相比,双稳态发电机因其能够在更宽的频率范围内收集振动能量而受到热烈关注。然而,这些双稳态收割机通常通过扫频来表征,该扫频并不能揭示它们可以达到的所有稳态行为,因此也无法揭示其全部能量收集潜力。在这种行为中,次谐波运动被这种经典的表征所掩盖,因此并未引起很多关注。这项研究提出了对次谐波轨道进行能量收集的原始完整分析,以预测其对双稳态发电机全球带宽的贡献。此外,引入了新的标准,称为稳定性鲁棒性,以估计这些行为对不同水平的干扰的敏感性,从而可以精确地估计适合在现实条件下进行能量收集的适当行为(行为容易达到并保持在时间)。用基于弯曲梁的电磁发生器进行的实验结果证实了该标准的相关性,与分析预测显示出良好的一致性。最终,在理论上和实验上,亚谐波行为似乎都引起了人们的极大兴趣,因为利用它们会导致所考虑的双稳态能量采集器的全球工作频率范围增加180%,在0Hz的70 Hz带宽下,其产生的频率超过100 µW。 5 g。

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