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Frequency tuning design for vibration-driven electromagnetic energy harvester

机译:振动驱动电磁能量采集器的频率调谐设计

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The common resonant-based vibration energy harvester effectively converts mechanical vibration to electrical power when an ambient excitation frequency matches the specific resonant frequency of the device. The resonant frequencies of energy harvesters are generally fixed during the design process and cannot be changed after fabrication. Therefore frequency tuning technology that allows for operation in a wide frequency range is desirable for a vibration energy harvester. In this study, the authors proposed a novel frequency tuning design of vibration-driven energy harvester, which used electromagnetic conversion. The proposed frequency tuning method uses a rotatable spring in order to adjust the spring constant. Through this tuning method, the resonant frequency of the harvester can be manipulated simply by rotating the spring. The proposed tuning-based energy harvester has been successfully tuned to have a resonant frequency from 23 to 32 Hz. These test results agree with the ANSYS analysis presented. The experimental results demonstrated that the proposed energy harvester can generate a maximum power output of 60 μW with an acceleration of 0.5 g (1 g = 9.81 m/s). When the proposed harvester was attached to an automobile engine, a maximum open-circuit voltage of 1.78 V was produced at 700 RPM.
机译:当环境激励频率与设备的特定谐振频率匹配时,基于共振的通用振动能量收集器可以有效地将机械振动转换为电能。能量收集器的谐振频率通常在设计过程中是固定的,并且在制造后无法更改。因此,对于振动能量收集器而言,期望允许在宽频率范围内操作的频率调谐技术。在这项研究中,作者提出了一种新颖的振动驱动能量采集器的频率调谐设计,该设计使用电磁转换。所提出的频率调谐方法使用可旋转弹簧以调节弹簧常数。通过这种调整方法,可以简单地通过旋转弹簧来控制收割机的共振频率。所提出的基于调谐的能量采集器已成功调谐到23至32 Hz的谐振频率。这些测试结果与提出的ANSYS分析一致。实验结果表明,提出的能量采集器可以产生最大60μW的功率输出,加速度为0.5 g(1 g = 9.81 m / s)。当建议的收割机安装到汽车发动机上时,在700 RPM时产生的最大开路电压为1.78V。

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