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A diamagnetically stabilized horizontally levitated electromagnetic vibration energy harvester

机译:抗磁稳定的水平悬浮电磁振动能量采集器

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This article investigates a horizontal diamagnetic levitation (HDL) system for vibration energy harvesting. In this configuration, two large magnets, alias lifting magnets, are arranged co-axially at a distance such that in between them a magnet, alias floating magnet, is passively levitated at a laterally offset equilibrium position. The levitation is stabilized in the horizontal direction by two diamagnetic plates made of pyrolytic graphite placed on each side of the floating magnet. This HDL configuration permits large amplitude vibration of the floating magnet and exploits the ability to tailor the geometry to meet specific applications due to its frequency tuning capability. Theoretical modeling techniques are discussed followed by an experimental setup to validate it. At an input root mean square (RMS) acceleration of 0.0434 m/s~2 (0.0044 g_(rms) and at a resonant frequency of 1.2 Hz, the prototype generated a RMS power of 3.6 μW with an average system efficiency of 1.93%. Followed by the validation, parametric studies on the geometry of the components are undertaken to show that with the optimized parameters the efficiency can be further enhanced.
机译:本文研究了用于振动能量收集的水平抗磁悬浮(HDL)系统。在这种构造中,两个大磁体,即别名提升磁体,以一定距离同轴布置,使得在它们之间的磁体,即别名浮动磁体在侧向偏移的平衡位置处被动地悬浮。通过在浮动磁体的每一侧上放置两个由热解石墨制成的抗磁板,可以在水平方向上稳定悬浮。这种HDL配置允许浮动磁铁产生大幅度的振动,并且由于其频率调谐能力,可利用其定制几何形状以满足特定应用的能力。讨论了理论建模技术,然后进行了实验验证。在输入均方根(RMS)加速度为0.0434 m / s〜2(0.0044 g_(rms)且共振频率为1.2 Hz时,该原型产生的RMS功率为3.6μW,平均系统效率为1.93%。验证之后,对部件的几何形状进行参数研究,以表明使用优化的参数可以进一步提高效率。

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