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Electromagnetic resonant cavity wind energy harvester with optimized reed design and effective magnetic loop

机译:具有优化簧片设计和有效磁环的电磁谐振腔风能采集器

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摘要

We demonstrate a new electromagnetic resonant cavity wind energy harvester combined with dual- branch reed and turning fork vibrator to harvest wind energy for wireless sensor nodes. Compared with electromagnetic structures in the past, the proposed magnetic circuit has a better linearity and a magnetic loop that more effectively increases the rate of the change of magnetic flux. Moreover, the motion of the free magnet is directed vertically to the direction of the magnetic pole for a zero resistance startup mode and a compact construction. We also designed a tuning fork-like reed structure to reduce system losses. To achieve maximum output power, we defined a virtual resistance to deal with the decrease of the electromotive in the circuit caused by the Lorentz force between the magnet and the induced magnetic field of the coils when the circuit is turned on. The dimensions of the wind inlet were 60 mm× 60 mm. The maximum output power and conversion efficiency can reach 56 mW at wind speed of 20.3 m/s and 2.3% at wind speed of 4 m/s, respectively, with wind speed from 3.2 m/s to 21.2 m/s. The experiments show that this electromagnetic wind energy harvester has high output power and wide wind speed range.
机译:我们展示了一种新型电磁谐振腔风能采集器,该采集器与双分支簧片和转叉振动器相结合,可以采集无线传感器节点的风能。与过去的电磁结构相比,所提出的磁路具有更好的线性度和磁环,可以更有效地提高磁通量的变化率。而且,对于零电阻启动模式和紧凑的结构,自由磁体的运动垂直于磁极的方向。我们还设计了类似音叉的簧片结构,以减少系统损耗。为了获得最大输出功率,我们定义了一个虚拟电阻,以应对电路接通时磁体和线圈感应磁场之间的洛伦兹力引起的电路中电动势的降低。进风口的尺寸为60毫米×60毫米。在风速从3.2 m / s到21.2 m / s的情况下,风速为20.3 m / s时的最大输出功率和转换效率分别为56 mW和4 m / s时的2.3%。实验表明,这种电磁风能采集器具有较高的输出功率和较宽的风速范围。

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