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Up-scaled macro-device implementation of a MEMS wideband vibration piezoelectric energy harvester design concept

机译:MEMS宽带振动压电能量采集器设计概念的大型宏设备实现

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In this work, we discuss a novel mechanical resonator design for the realisation of vibration Energy Harvester (EH) capable to deliver power levels in the mW range. The device overcomes the typical constraint of frequency narrowband operability of standard cantilevered EHs, by exploiting a circular-shaped resonator with an increased number of mechanical Degrees Of Freedom (DOFs), leading to several resonant modes in the range of vibrations of interest (i.e. multi-modal wideband EH). The device, named Four-Leaf Clover (FLC), is simulated in Ansys Workbench (TM), showing a significant number of resonant modes up to vibrations of around 2 kHz (modal eigenfrequencies analysis), and exhibiting levels of converted power up to a few mW at resonance (harmonic coupled-field analysis). The FLC mechanical structure, along with cantilevered test structure, is realised by micro-milling of an Aluminium foil. PolyVinyliDene Fluoride (PVDF) film sheet pads are assembled in order to collect first experimental feedback on generated power levels. The FLC and cantilevered EH test structures are characterised experimentally with a measurement setup purposely developed, showing encouraging performance related to the technology chosen for the realisation of EH, thus paving the way for full validation of the macro-FLC concept.
机译:在这项工作中,我们将讨论一种新颖的机械谐振器设计,以实现能够提供mW范围内功率水平的振动能量收集器(EH)。该设备通过利用具有增加的机械自由度(DOF)数量的圆形谐振器,克服了标准悬臂EH的频率窄带可操作性的典型限制,从而在感兴趣的振动范围内产生了多个谐振模式(即, -模态宽带EH)。该器件名为四叶三叶草(FLC),在Ansys Workbench(TM)中进行了仿真,显示了高达2 kHz左右振动的大量共振模态(模态本征频率分析),并展示了高达共振时只有几兆瓦(谐波耦合场分析)。 FLC机械结构以及悬臂测试结构是通过铝箔的微铣削实现的。组装聚氟乙烯(PVDF)薄膜垫,以收集有关产生的功率水平的第一实验反馈。 FLC和悬臂式EH测试结构通过专门开发的测量设置进行了实验表征,显示出与实现EH所选择的技术相关的令人鼓舞的性能,从而为全面验证Macro-FLC概念铺平了道路。

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