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Harvesting performance of quad-stable piezoelectric energy harvester: Modeling and experiment

机译:四稳态压电能量采集器的采集性能:建模和实验

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摘要

To overcome the defects of bi-stable energy harvester (BEH) and improve the energy conversion ability under weak stochastic excitation, we developed a novel quad-stable energy harvester (QEH). This configuration is composed of a piezoelectric cantilever beam with a tip magnet and three external fixed magnets. By adjusting positions of the fixed magnets and altering the distances between the tip and the fixed magnets, four stable equilibrium positions (SEPs) can be realized in the static state of QEH. The diagram of potential energy illustrates that QEH has shallower and wider potential wells than BEH at the same separation distance, implying that it can execute jumping across the potential barrier easily. Validation experiment was carried out and the experimental results showed that QEH could create larger deflection and generate higher output voltage than BEH nearly over the whole range of excitation intensity. Furthermore, by controlling the gap and separation distances, the QEH can be optimized to reach the maximum output power for a certain excitation intensity.
机译:为了克服双稳态能量收集器(BEH)的缺点并提高弱随机激励下的能量转换能力,我们开发了一种新型的四稳态能量收集器(QEH)。该结构由具有尖端磁体和三个外部固定磁体的压电悬臂梁组成。通过调整固定磁体的位置并更改尖端与固定磁体之间的距离,可以在QEH的静态状态下实现四个稳定的平衡位置(SEP)。势能图说明,在相同的分隔距离处,QEH的势阱比BEH浅且宽,这意味着它可以轻松地执行跨势垒的跳跃。进行了验证实验,实验结果表明,QEH几乎在整个激发强度范围内都会产生比BEH大的偏转并产生更高的输出电压。此外,通过控制间隙和间隔距离,可以优化QEH以在特定激发强度下达到最大输出功率。

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