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Piezoelectric-Based Rotary Electrical Energy Generator for Harvesting Energy from Low and Highly Variable Rotary Motion

机译:基于压电的旋转电能发生器,用于从低速和高速旋转运动中收集能量

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A class of piezoelectric-based rotary electrical-energy generator is presented in which a polygon-shaped gear is used to effectively couple the rotating shaft with multiple piezoelectric cantilevers. The relation between the input rotational speed and the output power production for a laboratory-scale device with an octagonal gear is systematically characterized both by experiments with DC-motor controlled rotation inputs and by finite-element analyses (FEA) with prescribed gear rotational speeds. The electric signals generated by each piezoelectric bimorph are shown in phase with each other as well as the total power output scales with the number of piezoelectric bimorphs. The generator outputs higher electric power over a significantly wider range of rotational frequencies than similar devices do using the piezoelectric transduction mechanism. The generated power increases almost linearly with the input rotational speed for input frequencies up to at least 300 RPM. The broadband feature of the present generator makes it ideal for power generation systems that operate with low frequent, broadband excitations like those that harvest energy from wind and tidal flows.
机译:提出了一类基于压电的旋转电能发生器,其中使用多边形齿轮有效地将旋转轴与多个压电悬臂耦合。带有八角齿轮的实验室规模设备的输入转速和输出功率输出之间的关系通过直流电动机控制的旋转输入的实验以及规定齿轮转速的有限元分析(FEA)进行系统地表征。每个压电双压电晶片产生的电信号彼此同相显示,总功率输出比例与压电双压电晶片的数量成比例。与使用压电换能机构的类似设备相比,发电机在更大的旋转频率范围内输出更高的电功率。对于至少300 RPM的输入频率,所产生的功率几乎随输入转速线性增加。本发电机的宽带特性使其非常适用于以低频率,宽带激励运行的发电系统,例如那些从风和潮汐流中获取能量的激励系统。

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