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Analytical Force and Flux for a 1-D Electromagnetic Vibration Energy Harvester

机译:用于1-D电磁振动能量收割机的分析力和通量

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A vibration energy harvester (VEH) converts the kinetic energy of a moving source into electrical energy. In this article, we consider a 1-D electromagnetic vibration energy harvester (1-D EMVEH) that consists of three coaxial cylindrical permanent magnets enclosed in a tube such that the middle magnet is levitating. The resulting movement of the middle magnet can then induce an electromotive force (EMF) in one or more surrounding coils. Using an analytical model, we derive expressions for the 1-D-EMVEHs characteristic frequency and output power by using the Fourier space approach. First, the magnetostatic energy of the system as a function of the position of the levitating magnet is calculated. Its spatial gradient gives the force acting on a magnet, which drives its dynamics. Next, more accurate magnetic flux and EMF expressions are obtained. The results are compared with experimental measurements, revealing an excellent agreement.
机译:振动能量收割机(VAR)将移动源的动能转换成电能。在本文中,我们考虑一个1-D电磁振动能量收割机(1-D Emveh),其由三个封装在管中的三个同轴圆柱形永磁体组成,使得中间磁体悬浮。然后,中间磁铁的所得到的运动可以在一个或多个周围线圈中诱导电动势(EMF)。使用分析模型,我们通过使用傅里叶空间方法来实现1-D-Emvehs特征频率和输出功率的表达式。首先,计算作为悬浮磁体的位置的函数的系统的磁化能量。其空间梯度使力作用在磁铁上,这使其动态驱动。接下来,获得更精确的磁通量和EMF表达式。将结果与实验测量进行比较,揭示了一个很好的一致性。

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