首页> 外文期刊>Indian Journal of Pure & Applied Physics >Design optimization in geometry of seismic mass for MEMS based cantilever type piezoelectric energy harvester for motor vibrations
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Design optimization in geometry of seismic mass for MEMS based cantilever type piezoelectric energy harvester for motor vibrations

机译:基于MEMS的悬臂式压电能量收集器的振动质量几何优化设计。

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Piezoelectric energy harvesters are suitable for vibration energy harvesting due to simple design, operation and fabrication in MEMS technology. Cantilever structures fixed from one end and seismic mass at the other must tune to different resonance frequency to ensure wideband frequency operation. Adequate width to length ratio of cantilever is required to avoid curling of cantilevers (bending). Effect of increase in width of the cantilever structure on resonance frequency has been investigated and also compared analytically in this paper. An optimized design has been proposed which compensates for the increase in resonance frequency due to increase in width by changing the geometry of the seismic mass. With the change in geometry of seismic mass a shift in center of mass has been achieved towards the free end of the cantilever which reduces the resonance frequency which is desirable. The design optimization of seismic mass reported in this paper reduces the resonance frequency by 4.27 % which is appreciated as it is required to harvest ambient vibrations having low frequency.
机译:由于MEMS技术的简单设计,操作和制造,压电能量收集器适用于振动能量收集。从一端固定的悬臂结构和在另一端固定的地震质量必须调整到不同的谐振频率,以确保宽带频率运行。为了避免悬臂弯曲(弯曲),需要适当的悬臂宽度与长度之比。本文研究了悬臂结构宽度的增加对共振频率的影响,并进行了分析比较。已经提出了一种优化设计,该设计通过改变地震质量的几何形状来补偿由于宽度增加而引起的共振频率的增加。随着地震质量的几何形状的变化,已经实现了向悬臂的自由端的质心偏移,这降低了期望的共振频率。本文报道的地震质量设计优化可将共振频率降低4.27%,这是人们所需要的,因为它需要收集具有低频的环境振动。

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