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Piezoelectric energy harvester under parametric excitation: A theoretical and experimental investigation

机译:参数激励下的压电能量采集器:理论和实验研究

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In the present work, both theoretical and experimental investigation of a vertical cantilever beam-based piezoelectric energy harvester are carried out under principal parametric resonance condition. A piezoelectric patch is attached near the fixed end of the cantilever beam along with an attached mass positioned at an arbitrary location. The extended Hamilton's principle is used to derive the spatio-temporal equation of motion, and generalized Galerkin's approximation is used to obtain the temporal nonlinear electromechanical governing equation of motion. The method of multiple scales is used to find the reduced modulation equations. Due to large transverse deflection and effect of rotary inertia of the attached mass, the system exhibits cubic and inertial nonlinearities. An experimental setup with slider crank mechanism-based shaker and a harvester consisting of a cantilever beam with piezoelectric patch and attached mass is designed and developed. The challenges posed by parametric resonance in crack development in the PZT and in the beam are reported. The theoretical and experimental output voltage and the power obtained are found to be in good agreement. Furthermore, a qualitative and quantitative comparative study of 17 energy harvesters has been carried out, and the normalized power densities have been compared.
机译:在目前的工作中,在主要的参数共振条件下进行了垂直悬臂梁式压电能量收集器的理论和实验研究。压电贴片与悬臂的固定端部附近的附接质量块一起附接在任意位置。扩展的汉密尔顿原理用于导出运动的时空方程,广义的Galerkin近似用于获得运动的时间非线性机电控制方程。多尺度方法用于找到简化的调制方程。由于较大的横向挠度和附加质量的旋转惯性的影响,该系统表现出三次和惯性非线性。设计并开发了一个实验装置,该装置具有基于曲柄曲柄机构的振动器和由带有压电贴片和附加质量的悬臂梁组成的收割机。报告了在PZT和梁中裂纹扩展过程中参数共振带来的挑战。发现理论和实验输出电压与获得的功率吻合良好。此外,已经对17个能量收集器进行了定性和定量的比较研究,并对标准化的功率密度进行了比较。

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