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Analysis and fabrication steps for a 3D-pyramidal high density coil electromagnetic micro-generator for energy harvesting applications

机译:用于能量收集应用的3D金字塔形高密度线圈电磁微型发电机的分析和制造步骤

摘要

In the field of energy harvesting, recycling the energy of mechanical vibrations from the environment becomes an attractive option to use in low power applications. With this goal, mechanisms of transduction have been developed with electrostatic, piezoelectric and electromagnetic principles of operation. In this work we present the analysis for an electromagnetic micro-generator using the linear generator approach combined with the dependence of the electromotive induced force (EMF) with geometrical parameters such as the radii of the coil and the magnet, the distance between them, and the >slope> of the coil, a parameter representing the reduction of radii as a function of each turn of the helicoidal winding. The latter feature introduces the possibility of pyramidal coils instead of solenoidal coils. We show that when the distance between the coil and the magnet is of the order of the radius of the magnet, the pyramidal geometry presents a higher induced electromotive force than a solenoidal coil of comparable dimensions. We also illustrate a method for the construction of a micro-electromagnetic generator which contemplates the fabrication of pyramidal coils with tridimensional electron beam lithography. Results for resonant structures and microcoils are discussed. The estimated induced EMF and power were calculated for a pyramidal high density coil generator, showing a better performance for the pyramidal when compared with the solenoidal geometry. © 2013 Elsevier B.V.
机译:在能量收集领域,从环境中回收机械振动的能量成为在低功率应用中使用的有吸引力的选择。为了这个目标,已经利用静电,压电和电磁操作原理开发了转导机制。在这项工作中,我们介绍了使用线性发电机方法结合电磁感应力(EMF)与几何参数(例如线圈和磁铁的半径,它们之间的距离以及线圈的“斜率”(slope),该参数代表半径的减少,该半径随螺旋绕组的每一匝而变。后一个特征引入了金字塔形线圈而不是螺线管线圈的可能性。我们显示出,当线圈和磁体之间的距离为磁体半径的数量级时,与类似尺寸的螺线管线圈相比,金字塔形几何形状呈现出更高的感应电动势。我们还说明了一种用于构造微电磁发生器的方法,该方法考虑了利用三维电子束光刻技术制造金字塔形线圈的方法。讨论了共振结构和微线圈的结果。计算出金字塔形高密度线圈发生器的估计感应电动势和功率,与螺线管几何形状相比,金字塔形具有更好的性能。 ©2013 Elsevier B.V.

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