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Bistable electromagnetic generator based on buckled beams for vibration energy harvesting

机译:基于弯曲梁的双稳态电磁发电机,用于收集振动能量

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Bistable piezoelectric generators have been demonstrated to outperform linear spring-mass-damper systems in terms of frequency bandwidth and harvested power from wideband vibrations. In this work, a nonlinear vibration energy harvester consisting of clamped-clamped buckled beams combined with a four-pole magnet across coil generator is investigated. By buckling the support beams, an elastic Duffing potential is provided so that the seismic mass can pass from being dynamically monostable to bistable. A theoretical model of the system is presented, and experimental tests are performed on a prototype. In the unbuckled state, the device exhibits higher maximum power at resonance than in the buckled, but, in general, no significant difference is noted in terms of average harvested power between monostable and bistable regimes under harmonic and band-limited stochastic vibrations. However, for an optimal acceleration level, the bistable configuration shows a factor of 2.5 times wider bandwidth and higher power outside from the natural resonance as compared with the monostable regime. It is also observed that the benefits of bistable dynamics mostly depend on the ratio between the characteristic cutoff frequency of the electrical circuit and the mechanical resonance.
机译:在频率带宽和从宽带振动中获取的功率方面,双稳态压电发电机已经证明优于线性弹簧质量阻尼器系统。在这项工作中,研究了一种非线性振动能量收集器,该能量收集器由夹钳式弯曲梁与跨线圈发电机的四极磁体组合而成。通过屈曲支撑梁,可提供弹性的达芬势能,使地震质量可以从动态单稳态传递到双稳态。提出了系统的理论模型,并对原型进行了实验测试。在非弯曲状态下,该装置在共振时的最大功率要大于弯曲状态下的最大功率,但是,总的来说,在谐波和有限频带随机振动下,单稳态和双稳态状态下的平均收获功率没有显着差异。但是,对于最佳加速水平,与单稳态相比,双稳态配置的带宽是自然共振之外的2.5倍,带宽和功率更高。还观察到,双稳态动力学的好处主要取决于电路的特征截止频率与机械共振之间的比率。

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