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Simulation analysis and optimization design for wide band piezoelectric oscillator of energy harvesting device

机译:宽带压电振荡器的仿真分析与优化设计

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摘要

An L type broadband piezoelectric energy harvesting device was proposed in this paper, and the finite element model of L-type piezoelectric vibrator is established and simulated. It shows that the voltage corresponding to the first and third order resonant frequency is 0.06 V and 0.183 V, respectively, although higher than that of the ordinary piezoelectric vibrator, the voltage of the first mode and third mode for the piezoelectric vibrator is not close, which has little effect to broaden the bandwidth. Consequently, the simulation model for multi-cantilever piezoelectric vibrator was established, and its structural sizes were optimized, and it was obtained very close to first and third order resonant voltage, the bandwidth of the vibrator was broadened to 12.5 Hz. The multi-cantilever piezoelectric vibrator can be applied in a variety of devices for the collection of mechanical energy, and to provide a research foundation for the development of intelligent structures with self-sufficiency.
机译:本文提出了L型宽带压电能量收集装置,建立和模拟L型压电振动器的有限元模型。它表明,对应于第一和第三阶谐振频率的电压分别为0.06V和0.183V,尽管高于普通压电振动器的电压,但压电振动器的第一模式和第三模式的电压不关闭,这几乎没有影响带宽的效果。因此,建立了多悬臂压电振动器的仿真模型,并优化了其结构尺寸,并获得了非常接近第一和第三阶谐振电压的尺寸,将振动器的带宽宽为12.5Hz。多悬臂压电振动器可以应用于各种装置,用于收集机械能,并为自给自足的智能结构提供研究基础。

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