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A Mechanical Frequency Up-Conversion Mechanism for Vibration Based Energy Harvesters

机译:基于振动的能量收割机机械频率上转换机构

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This paper presents a new mechanical frequency up-conversion (FUC) mechanism for harvesting energy from external low frequency vibrations. The structure consists of a magnet placed on a support, a polystyrene cantilever carrying a pick-up coil, and a mechanical barrier which converts low frequency vibrations to a higher frequency, hence increasing the efficiency of the system. The tested structure proved to give 20.3 mV and 68.7 μW RMS power output by up-converting 10 Hertz external vibration to 643 Hertz. The tests with different magnet configurations and cantilever lengths showed that horizontal cascading of the magnets improve the performance whereas an optimum cantilever length exits for the maximum generated power. An analytical model is also developed for the system, supporting the test results. The proposed structure is a good candidate to be realized by using microfabrication techniques in terms of generated voltage and power levels.
机译:本文提出了一种新的机械频率上转换(FUC)机构,用于从外部低频振动收获能量。该结构包括放置在支撑件上的磁铁,携带拾取线圈的聚苯乙烯悬臂,以及将低频振动转换为更高频率的机械屏障,因此提高了系统的效率。经过测试的结构证明,通过将10赫兹外部振动加速至643赫兹,给出20.3 MV和68.7μW的RMS功率输出。具有不同磁体配置和悬臂长度的测试显示,磁铁的水平级联提高了性能,而最佳悬臂长度出口以获得最大的产生功率。还为系统开发了一个分析模型,支持测试结果。所提出的结构是通过在所产生的电压和功率水平方面使用微制造技术来实现的良好候选者。

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