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Study on the asymmetric bistability of the vibration energy harvester based on diamagnetic levitation

机译:基于反磁悬浮的振动能量采集器不对称双稳态研究

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, and nonlinear vibration model of the energy harvester is established in MATLAB. Under different structural parameters and external excitations, the response of the floating magnet is obtained. The results show that the asymmetric bistable model has a wider response and lower energy barrier than symmetrical model. It is easier to achieve periodic motion with large amplitude, which is beneficial to improve the output voltage of the energy harvester. Simultaneously, three connection modes of the coils are compared, and it is found that the optimized coils connection pattern can significantly improve the output voltage of the energy harvester. Finally when the floating distance is 4.2mm, there are two stable equilibrium positions: Z+=0.86mm and Z-= -1.00mm respectively, and, the negative and positive displacements of the floating magnet are about -1.3mm and +1.25mm respectively. When the upper and lower coil layers both are one layer, the maximum output voltage of the energy harvester is about 3mV.
机译:,在MATLAB中建立了能量采集器的非线性振动模型。在不同的结构参数和外部激励下,可以获得浮动磁铁的响应。结果表明,与对称模型相比,非对称双稳态模型具有更宽的响应和更低的能垒。更容易实现大幅度的周期性运动,这有利于提高能量采集器的输出电压。同时,比较了三种线圈的连接方式,发现优化的线圈连接方式可以显着提高能量采集器的输出电压。最后,当浮动距离为4.2mm时,有两个稳定的平衡位置:Z + = 0.86mm和Z-=-1.00mm,浮动磁铁的负和正位移分别约为-1.3mm和+ 1.25mm。 。当上下线圈层均为一层时,能量收集器的最大输出电压约为3mV。

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