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Theoretical analysis and experimental study of a nonlinear U-shaped bi-directional piezoelectric energy harvester

机译:非线性U形双向压电能量收割机的理论分析与实验研究

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摘要

Narrow bandwidth and uni-directional acquisition restrict the application of a conventional cantilever piezoelectric energy harvester. In this study, a magnet-induced nonlinear U-shaped bi-directional piezoelectric harvester is proposed to overcome the shortcomings of the conventional harvester. The U-shaped harvester consists of a beam bent into a U shape with both ends fixed. A pair of piezoelectric plates is attached to the beam for power generation. To introduce nonlinear magnetic force, a magnet is attached to the center of the beam while a pair of magnets are fixed to the base. The theoretical model of the proposed harvester is developed and validated with experimental results. The proposed harvester is investigated in two orthogonal directions of vibration. The proposed harvester shows linear responses in vertical excitations. However, a strong hardening effect can be observed in horizontal excitations especially when the magnet gap is small. It is shown that the hardening effect can improve both the harvesting bandwidth and the output power in horizontal excitations. On the other hand, the resonant frequency of the vertical mode can be increased while that of the horizontal mode is decreased by reducing the magnet gap. This indicates that the magnet gap can be utilized to tune the ratio between the vertical and horizontal resonant frequencies to match the frequencies of vibration sources. Overall, the proposed nonlinear U-shaped harvester demonstrates the capability of bi-directional harvesting and improved performance with the aid of nonlinear magnetic force.
机译:窄带宽和单向采集限制了传统的悬臂压电能量收割机的应用。在该研究中,提出了一种磁铁诱导的非线性U形双向压电收割机以克服传统收割机的缺点。 U形的收割机由两端固定到U端部的梁组成。一对压电板附接到用于发电的梁。为了引入非线性磁力,磁铁附接到梁的中心,而一对磁体固定到基座。提出的收割机的理论模型是用实验结果开发和验证的。在两个正交振动方向上研究了所提出的收割机。拟议的收割机在垂直激发中显示出线性反应。然而,尤其是当磁隙较小时,可以在水平激励中观察到强的硬化效果。结果表明,固化效果可以改善水平激发的收获带宽和输出功率。另一方面,可以增加垂直模式的谐振频率,而通过减小磁体间隙降低了水平模式的谐振频率。这表明磁体间隙可用于调谐垂直和水平谐振频率之间的比率以匹配振动源的频率。总的来说,拟议的非线性U形收割机借助非线性磁力表明了双向收集和改善性能的能力。

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