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A novel low-frequency broadband piezoelectric energy harvester combined with a negative stiffness vibration isolator

机译:与负刚度隔振器组合的新型低频宽带压电能量采集器

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摘要

The transformation of waste vibration energy into low-power electricity has been intensely researched over the last decade to enable self-sustained wireless electronic components. Many kinds of nonlinear oscillators have been explored by several research groups in an effort to enhance the frequency bandwidth of operation. The negative stiffness vibration isolator, as a kind of passive vibration isolator, has undergone extensive investigation because of its low-frequency isolator characteristics. In this article, a novel broadband piezoelectric vibration energy harvester, which can be used for low-frequency ambient mechanical energy harvesting, is designed, and its dynamic responses are analyzed based on the advantage of the negative stiffness vibration isolator. The multi-scale perturbation method is applied to solve the electromechanical equations of the piezoelectric vibration energy harvester and obtain approximate analytical solutions. Solutions based on the analytical method and numerical simulations reveal the characteristics of significant broadband performance. The effects of the various system parameters on the frequency responses and output voltage of the piezoelectric vibration energy harvester system are investigated in detail, and the vibration isolation ability is verified by experimental measurements. It was concluded that the proposed piezoelectric vibration energy harvester achieved broadband vibration energy harvesting in the low-frequency vibration range.
机译:在过去的十年中,已经对将废料振动能转化为低功率电力进行了深入研究,以实现自我维持的无线电子组件。几个研究小组已经探索了许多非线性振荡器,以努力提高工作的频率带宽。负刚度隔振器作为一种被动隔振器,由于其低频隔振器的特性而受到了广泛的研究。本文设计了一种新型的宽带压电振动能量采集器,可用于低频环境机械能量采集,并基于负刚度隔振器的优势分析了其动态响应。应用多尺度摄动法求解压电振动能量采集器的机电方程,得到近似解析解。基于分析方法和数值模拟的解决方案揭示了显着宽带性能的特征。详细研究了各种系统参数对压电振动能量采集器系统的频率响应和输出电压的影响,并通过实验测量验证了其隔振能力。结论是,所提出的压电振动能量收集器实现了低频振动范围内的宽带振动能量收集。

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