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Development of the magnetic force-induced dual vibration energy harvester using a unimorph cantilever

机译:使用单压电晶片悬臂开发磁力感应双振动能量采集器

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In this study, a high frequency piezoelectric energy harvester converted from the human low vibrated motion energy was newly developed. This hybrid energy harvester consists of the unimorph piezoelectric cantilever, the pendulum and a pair of permanent magnets. One magnet was attached at the edge of cantilever, and the counterpart magnet at the edge of pendulum. The mechanical energy provided through the human walking motion, which is a typical ubiquitous existence of vibration, is converted to the electric energy via the piezoelectric unimorph cantilever vibration. At first, we studied the energy convert mechanism and analyze the performance of novel energy harvester, where the resonance free vibration of unimorph piezoelectric cantilever generated a high electric power. Next, we equipped the counterpart permanent magnet at the edge of pendulum, which vibrates with a very low frequency caused by the human walking. Then the counterpart magnet was set at the edge of unimorph piezoelectric cantilever, which vibrated with a high frequency. This low-to-high frequency convert "dual vibration system" can be characterized as an enhanced energy harvester. We examined and obtained average values of voltage and power in this system, as 8.31 mV and 0.33 μW. Those results show the possibility to apply for the energy harvester in the portable and implantable Bio-MEMS devices.
机译:在这项研究中,从人类低振动运动能量转换而来的高频压电能量收集器是新开发的。这种混合能量收集器由单压电晶片悬臂,摆和一对永磁体组成。一个磁铁附着在悬臂的边缘,另一个磁铁附着在摆的边缘。通过人体步行运动提供的机械能(通常是振动的普遍存在)通过压电单压电晶片悬臂振动转换为电能。首先,我们研究了能量转换机制并分析了新型能量收集器的性能,其中单压电晶片压电悬臂的无共振振动产生了高电功率。接下来,我们在摆锤的边缘安装了对应的永磁体,该永磁体以人为行走所引起的非常低的频率振动。然后将对应的磁体放置在单压电晶片悬臂梁的边缘,该压电悬臂梁会高频振动。这种从低到高频转换的“双重振动系统”可以被描述为增强的能量收集器。我们检查并获得了该系统中电压和功率的平均值,分别为8.31 mV和0.33μW。这些结果表明在便携式和可植入的Bio-MEMS设备中应用能量收集器的可能性。

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