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Modeling and experimental validation of a buckled compressive-mode piezoelectric energy harvester

机译:屈曲压缩模式压电能量收割机的建模与实验验证

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This paper presents a novel buckled compressive-mode piezoelectric energy harvesting device (BC-PEH) to improve the energy harvesting capability. The BC-PEH synthesizes the merits of the force amplification effect of the flexural motion and the broad bandwidth of buckled-beam structures. In this paper, both theoretical and experimental investigations are performed on the BC-PEH, under both harmonic and random excitations. Taking negative stiffness, nonlinear damping and nonlinear piezoelectric coupling into account, we build an analytical model that provides a comprehensive insight into the nonlinear electromechanical coupling system. The influence of parameters on the performance is thoroughly discussed via the harmonic balance method and numerical technique. The analytical results closely render the experimental data and demonstrate a considerable performance enhancement. Compared with state-of-the-art energy harvesters, the BC-PEH prototype not only exhibits its superiority in terms of power density, normalized power density and power normalized by mass and acceleration, but also indicates a 194% broader working bandwidth.
机译:本文介绍了一种新型屈曲压缩模式压电能量收集装置(BC-PEH),以提高能量收集能力。 BC-PEH合成弯曲运动的力放大效果的优点和屈曲光束结构的宽带宽。在本文中,在谐波和随机激发下,在BC-PEH下进行理论和实验研究。考虑到负刚度,非线性阻尼和非线性压电耦合,建立一个分析模型,为非线性机电耦合系统提供全面的洞察。通过谐波平衡法和数值技术彻底讨论了参数对性能的影响。分析结果密切呈现实验数据并表现出相当大的性能增强。与最先进的能量收割机相比,BC-PEH原型不仅在功率密度,归一化功率密度和由质量和加速度标准化的功率方面具有其优越性,而且还表明了194%更广泛的工作带宽。

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