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Design and Implementation of an Electromagnetic Energy Harvester for Linear and Rotary Motion Applications.

机译:用于线性和旋转运动应用的电磁能量收集器的设计和实现。

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摘要

This thesis presents a new design for an electromagnetic energy harvester to be used in both linear and rotary motion applications. This electromagnetic energy harvester consists of a moving coil within a fixed magnetic circuit. This magnetic circuit comprises of a permanent magnet (as a magnetic source), a magnetic conductor (such as iron), and an air gap to create a space for coil movement inside energy harvester setup. In the parameter study of this electromagnetic energy harvester, it has been demonstrated that applying design modifications will improve the amount of induced voltage by %50. For linear motion applications, the energy harvester has been mounted on a linear motor and the experimental results indicated that when the coil movements' speed is 70 [mm/s], the maximum harvested power is 5.320 [mW]. For rotary motion applications, first a voice coil speaker has been used as a single degree of freedom system to produce voltage through a rotating beam and hub. Since in lower resonance frequencies, the maximum induced voltage is quite low, thus in next step, the two degrees of freedom energy harvesting system for rotary motion applications has been introduced. This system has been mounted on a car ring and the result illustrated that at the resonance frequency (15 [Hz]), the induced voltage was 0.175 [V] for each coil.
机译:本文提出了一种用于线性和旋转运动应用的电磁能量收集器的新设计。该电磁能量收集器由固定磁路内的活动线圈组成。该磁路包括一个永磁体(作为磁源),一个磁导体(例如铁)和一个气隙,以在能量收集器装置内部创建一个用于线圈运动的空间。在此电磁能量收集器的参数研究中,已证明对设计进行修改可将感应电压的数量提高50%。对于线性运动应用,能量收集器已安装在线性电动机上,实验结果表明,当线圈运动速度为70 [mm / s]时,最大收集功率为5.320 [mW]。对于旋转运动应用,首先将音圈扬声器用作单自由度系统,以通过旋转梁和轮毂产生电压。由于在较低的谐振频率下,最大感应电压非常低,因此在下一步中,已引入了用于旋转运动应用的两自由度能量收集系统。该系统已安装在汽车环上,结果表明,在共振频率(15 [Hz])下,每个线圈的感应电压为0.175 [V]。

著录项

  • 作者

    Hekmati, Alireza.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 M.S.
  • 年度 2013
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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