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Impact-driven, frequency up-converting coupled vibration energy harvesting device for low frequency operation

机译:用于低频运行的冲击驱动,频率上变频耦合振动能量收集装置

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This paper presents experiments and models of an energy harvesting device in which a low frequency resonator impacts a high frequency energy harvesting resonator, resulting in energy harvesting predominantly at the system's coupled vibration frequency. Analysis shows that a reduced mechanical damping ratio during coupled vibration enables increased electrical power generation as compared with conventional technology. Experiments demonstrate that the efficiency of electrical power transfer is significantly improved with the coupled vibration approach. An average power output of 0.43mW is achieved under 0.4g acceleration at 8.2Hz, corresponding to a power density of 25.5μWcm -3. The measured power and power density at the resonant frequency are respectively 4.8 times and 13 times the measured peak values for a conventional harvester created from a low frequency beam alone.
机译:本文介绍了一种能量收集设备的实验和模型,其中低频谐振器会影响高频能量收集谐振器,从而导致能量收集主要以系统的耦合振动频率进行。分析表明,与传统技术相比,减小耦合振动过程中的机械阻尼比可以增加发电量。实验表明,采用耦合振动方法可以显着提高电力传输的效率。在0.4g加速度下于8.2Hz时,平均功率输出为0.43mW,对应于25.5μWcm-3的功率密度。对于仅由低频波束产生的常规收割机,在谐振频率下测得的功率和功率密度分别是测得峰值的4.8倍和13倍。

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