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Study of the Ambient Vibration Energy Harvesting Based on Piezoelectric Effect

机译:基于压电效应的环境振动能量收集研究

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摘要

The resonance between piezoelectric vibrator and the vibration source is the key to maximize the ambient vibration energy harvesting by using piezoelectric generator. In this paper, the factors that influence the output power of a single piezoelectric vibrator are analyzed. The effect of geometry size (length, thickness, width of piezoelectric chip and thickness of metal shim) of a single cantilever piezoelectric vibrator to the output power is analyzed and simulated with the help of MATLAB (matrix laboratory). The curves that output power varies with geometry size are obtained when the displacement and load at the free end are constant. Then the paper points out multi-resonant frequency piezoelectric power generation, including cantilever multiresonant frequency piezoelectric power generation and disc type multi-resonant frequency piezoelectric generation. Multi-resonant frequency of cantilever piezoelectric power generation can be realized by placing different quality mass at the free end, while disc type multi-resonant frequency piezoelectric generation can be realized through series and parallel connection of piezoelectric vibrator.
机译:压电振动器与振动源之间的共振是通过使用压电发电机来最大化收集周围振动能量的关键。在本文中,分析了影响单个压电振动器输出功率的因素。利用MATLAB(矩阵实验室)分析和模拟了单个悬臂式压电振子的几何尺寸(长度,厚度,压电芯片的宽度和金属垫片的厚度)对输出功率的影响。当自由端的位移和负载恒定时,可获得输出功率随几何尺寸变化的曲线。然后指出了多共振频率压电发电,包括悬臂式多共振压电发电和盘式多共振频率压电发电。通过在自由端放置不同质量的质量,可以实现悬臂式压电发电的多共振频率,而通过串联和并联压电振动器可以实现圆盘式多共振频率压电发电。

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