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Broadband electromagnetic power harvester from vibrations via frequency conversion by impact oscillations

机译:宽带电磁功率采集器,通过振动通过频率转换产生振动

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摘要

In this paper, we propose an electromagnetic power harvester that uses a transformative multi-impact approach to achieve a wide bandwidth response from low frequency vibration sources through frequency-up conversion. The device consists of a pick-up coil, fixed at the free edge of a cantilever beam with high resonant frequency, and two cantilever beams with low excitation frequencies, each with an impact mass attached at its free edge. One of the two cantilevers is designed to resonate at 25 Hz, while the other resonates at 50 Hz within the range of ambient vibration frequency. When the device is subjected to a low frequency vibration, the two low-frequency cantilevers responded by vibrating at low frequencies, and thus their thick metallic masses made impacts with the high resonance frequency cantilever repeatedly at two locations. This has caused it along with the pick-up coil to oscillate, relative to the permanent magnet, with decaying amplitude at its resonance frequency, and results in a wide bandwidth response from 10 to 63 Hz at 2g. A wide bandwidth response between 10-51 Hz and 10-58 Hz at acceleration values of 0.5 g and 2g, respectively, were achieved by adjusting the impact cantilever frequencies closer to each other (25 Hz and 45 Hz). A maximum output power of 85 μW was achieved at 5 g at 30 Hz across a load resistor, 2.68 Ω.
机译:在本文中,我们提出了一种电磁功率采集器,该电磁功率采集器采用变换式多冲击方法,可以通过升频转换从低频振动源获得较宽的带宽响应。该装置由一个固定在谐振频率高的悬臂梁的自由边缘处的拾波线圈和两个激励频率低的悬臂梁组成,每个悬臂梁的自由边缘处都附着有冲击质量。在环境振动频率范围内,两个悬臂之一设计为以25 Hz共振,而另一个悬臂以50 Hz共振。当设备受到低频振动时,两个低频悬臂通过低频振动做出响应,因此它们的厚金属块在两个位置反复受到高共振频率悬臂的冲击。这导致其与拾波线圈一起相对于永磁体振荡,并在其共振频率处衰减,并在2g时产生了从10到63 Hz的宽带宽响应。通过将冲击悬臂频率调整为彼此接近(25 Hz和45 Hz),分别在加速度值为0.5 g和2g时,在10-51 Hz和10-58 Hz之间具有较宽的带宽响应。在负载为2.68Ω的情况下,以30 Hz的频率在5 g时,在5 g时实现了最大输出功率85μW。

著录项

  • 来源
    《Applied Physics Letters》 |2014年第11期|113902.1-113902.4|共4页
  • 作者单位

    Electrical and Computer Engineering, University of Missouri, Columbia, Missouri 65211, USA;

    Mechanical and Aerospace Engineering, University of Missouri, Columbia, Missouri 65211, USA;

    Electrical and Computer Engineering, University of Missouri, Columbia, Missouri 65211, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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