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The benefits of a magnetically coupled asymmetric monostable dual-cantilever energy harvester under random excitation

机译:随机激发下磁耦合非对称单稳态双悬臂能量采集器的优势

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摘要

Piezoelectric vibration energy harvesting is a promising technique to power wireless sensor networks. This article originally presents a magnetically coupled asymmetric monostable dual-cantilever piezoelectric energy harvester consisting of a generating piezoelectric cantilever beam and an auxiliary cantilever beam. Theoretical and experimental results both verify that the asymmetric harvester has the superior performance compared with the conventional magnetically coupled symmetric bistable dual-cantilever piezoelectric energy harvester, yielding higher voltage output under different magnetic coupling intensities and different power densities of the band-limited Gaussian white noise random excitation. More importantly, the mechanical strain of the asymmetric harvester is much smaller than that of the symmetric harvester, being lower than half of the latter one under strong magnetic coupling. Therefore, due to its higher energy conversion efficiency and better durability, the proposed asymmetric harvester is beneficial for practical environment vibration energy harvesting.
机译:压电振动能量收集是为无线传感器网络供电的有前途的技术。本文最初提出了一种磁耦合非对称单稳态双悬臂压电能量收集器,该能量收集器由产生的压电悬臂梁和辅助悬臂梁组成。理论和实验结果均证明,与传统的磁耦合对称双稳态双悬臂压电能量采集器相比,非对称采集器具有更好的性能,在不同的磁耦合强度和带限高斯白噪声的不同功率密度下产生更高的电压输出随机激发。更重要的是,不对称收割机的机械应变比对称收割机的机械应变小得多,在强磁耦合下小于对称收割机的一半。因此,由于其较高的能量转换效率和较好的耐久性,所以所提出的不对称收集器对于实际的环境振动能量收集是有益的。

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