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Micro-solenoid Electromagnetic Power Harvesting for Vibrating Systems

机译:振动系统的微电磁电磁功率采集

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The field of renewable energy has recently taken a surge with the advent of power harvesting systems. Much of the work previously done has focused primarily on dipole materials such as piezoelectric generators due to their high energy density. Exploring other vibration conversion techniques, electromagnetism has been theorized to be highly viable as well. In fact, in the presence of strong magnetic fields, its energy density can exceed that of piezoelectric systems. The key aspects to its usefulness lie in maximizing the rate of change of magnetic flux and thus maximizing the electric potential from the electromotive force. The specifics of this research include the descriptions of the electromagnetic theory, fabrication, and performance of a micro-electromagnetic power harvester with a vibration energy source. In addition, an empirical analysis of the influence of the micro-coil's geometry on the performance of the MEMS power harvester is given.
机译:随着电力收集系统的出现,可再生能源领域最近激增。由于其高能量密度,先前所做的许多工作主要集中在偶极材料上,例如压电发电机。通过探索其他振动转换技术,电磁学也被认为具有很高的可行性。实际上,在强磁场的存在下,其能量密度可以超过压电系统。其实用性的关键方面在于最大化磁通量的变化率,从而最大化来自电动势的电势。这项研究的具体内容包括对具有振动能源的微电磁功率收集器的电磁原理,制造和性能的描述。另外,对微线圈的几何形状对MEMS功率收集器性能的影响进行了经验分析。

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