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Subharmonic orbits and their stability robustness to greatly enhance the bandwidth of bistable vibration energy harvesters

机译:次谐轨道及其稳定性稳健性,大大提高了双稳态振动能量收割机的带宽

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This research work focuses on vibration energy harvesting in order to design an alternative to batteries for standalone, left-behind wireless devices. This study brings a new vision on bistable generators featuring nonlinear stiffness, presenting a wide operating frequency bandwidth compared to linear generators for a better adaptation to complex excitations. In this study, original behaviors of bistable oscillators are considered and analyzed for vibration energy harvesting, consisting in subharmonic motions for which the mass oscillates at a frequency N times lower than the excitation. First, experimental analysis is conducted with a generator integrating buckled beams for the bistability feature. It is shown that, in addition to the well-known first harmonic behavior, the third subharmonic orbit widens the bistable microgenerator useful operating frequency band by 180% compared to the sole exploitation of the first harmonic motion. A second part of this study analytically investigates those subharmonic orbits for the optimized design of future generator. The different orbits are obtained with the harmonic balance method and their stability is calculated for small disturbances. Stable orbits being more or less easy to reach and maintain, a new criterion is introduced, namely the stability robustness, indicating the stable orbit sensitivity to disturbances of different levels. For low stability robustness, the orbit will be considered as non-suitable for energy harvesting leading to a new definition of bistable generators frequency bandwidth. Analytical results following this method show good agreement with previous experimental results validating the relevance of stability robustness criterion.
机译:该研究工作侧重于振动能量收集,以便为独立的左后方无线设备设计电池的替代品。本研究为具有非线性刚度的双稳态发电机带来了一种新的视野,与线性发生器相比,呈现宽的工作频率带宽,以更好地适应复杂激励。在该研究中,考虑并分析了双稳态振荡器的原始行为以进行振动能量收集,其组成的次谐波运动,其质量振荡低于激发的频率。首先,使用用于双稳态特征的发电机的发电机进行实验分析。结果表明,除了众所周知的第一谐波行为之外,与第一谐波运动的唯一开发相比,第三个子发射轨道扩大了双峰微生物有用的工作频率带。这项研究的第二部分分析了对未来发电机的优化设计的那些次谐轨道进行了分析。用谐波平衡法获得不同的轨道,并且计算它们的稳定性以用于小扰动。稳定的轨道或多或少容易达到和维护,介绍了一种新的标准,即稳定性稳健性,表明对不同水平的扰动的稳定轨道敏感性。对于低稳定性稳健性,轨道将被认为是不适合能量收集的,导致频率带宽的新定义。该方法的分析结果与先前的实验结果讨论了验证稳定性稳健性标准的相关性的良好一致性。

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