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Large Power Amplification in Magneto-Mechano-Electric Harvesters through Distributed Forcing

机译:通过分布式强制放大电磁机电收割机中的功率

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Energy harvesting from extremely low frequency magnetic fields using magneto-mechano-electric (MME) harvesters enables wireless power transfer for operating Internet of Things (IoT) devices. The MME harvesters are designed to resonate at a fixed frequency by absorbing AC magnetic fields through a composite cantilever comprising of piezoelectric and magnetostrictive materials, and a permanent magnetic tip mass. However, this harvester architecture limits power generation because volume of the magnetic end mass is closely coupled with the resonance frequency of the device structure. Here, a method is demonstrated for maintaining the resonance frequency of the MME harvesters under all operating conditions (e.g., 60 Hz, standard frequency of electricity in many countries) while simultaneously enhancing the output power generation. By distributing the magnetic mass over the beam, the output power of the harvester is significantly enhanced at a constant resonance frequency. The MME harvester with distributed forcing shows 280% improvement in the power generation compared with a traditional architecture. The generated power is shown to be sufficient to power eight different onboard sensors with wireless data transmission integrated on a drone. These results demonstrate the promise of MME energy harvesters for powering wireless communication and IoT sensors.
机译:使用磁-机电(MME)收集器从极低频磁场中收集能量,可以为运行的物联网(IoT)设备实现无线功率传输。 MME收割机设计为通过包含压电和磁致伸缩材料的复合悬臂以及一个永久性磁头块吸收AC磁场,从而在固定频率上产生共振。但是,由于磁性末端质量的体积与设备结构的共振频率紧密耦合,因此这种收割机架构限制了发电。在此,说明了一种在所有操作条件下(例如,许多国家的60 Hz,标准电频率)维持MME收割机共振频率的方法,同时提高了输出功率的产生。通过将磁质量分布在电子束上,以恒定的共振频率显着提高了收割机的输出功率。与传统架构相比,具有分布式强制的MME收割机显示出发电量提高了280%。生成的功率显示为足以为八个不同的机载传感器供电,并在无人机上集成了无线数据传输。这些结果证明了MME能量收集器有望为无线通信和IoT传感器供电。

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