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Low-frequency wideband vibration energy harvesting by using frequency up-conversion and quin-stable nonlinearity

机译:低频宽带振动能量采用频率上转换和近稳态非线性

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This work presents models and experiments of an impact-driven and frequency up-converted wideband piezoelectric-based vibration energy harvester with a quintuple-well potential induced by the combination effect of magnetic nonlinearity and mechanical piecewise-linearity. Analysis shows that the interwell motions during coupled vibration period enable to increase electrical power output in comparison to conventional frequency up-conversion technology. Besides, the quintuple-well potential with shallower potential wells could extend the harvester's operating bandwidth to lower frequencies. Experiments demonstrate our proposed approach can dramatically boost the measured power of the energy harvester as much as 35 times while its lower cut-off frequency is two times lower than that of a conventional counterpart. These results reveal our proposed approach shows promise for powering portable wireless smart devices from low intensity, low-frequency vibration sources. (C) 2017 Published by Elsevier Ltd.
机译:这项工作提出了利用磁性非线性和机械分段线性的组合效应引起的Quintuple井电位的冲击驱动和频率上转换宽带压电振动能量收割机的模型和实验。分析表明,耦合振动时段期间的间隔运动能够增加与传统频率上转换技术相比的电力输出。此外,具有较浅的潜在井的Quintule井电位可能将收割机的操作带宽扩展到较低频率。实验证明我们所提出的方法可以大大提高能量收集器的测量功率,尽可能较低的35倍,而其较低的截止频率是比传统对应的两倍。这些结果揭示了我们所提出的方法,示出了从低强度,低频振动源供电的便携式无线智能设备。 (c)2017年由elestvier有限公司出版

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