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EFFECT OF ELECTROMECHANICAL COUPLING ON LOCALLY RESONANT METASTRUCTURES FOR SIMULTANEOUS ENERGY HARVESTING AND VIBRATION ATTENUATION APPLICATIONS

机译:机电耦合对局部谐振型振动衰减应用的影响

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The study of simultaneous energy harvesting and vibration attenuation has recently been the focus in many acoustic meta-materials investigations. The studies have reported the possibility of harvesting electric power using electromechanical coupling; however, the effect of the electromechanical resonator on the obtained bandgap 's boundaries has not been explored yet. In this paper, we investigate metamaterial coupled to electromechanical resonators to demonstrate the effect of electromechanical coupling on the wave propagation analytically and experimentally. The electromechanical resonator is shunted to an external load resistor to harvest energy. We derive the analytical dispersion curve of the system and show the band structure for different load resistors and electromechanical coupling coefficients. To verify the analytical dispersion relations, we also simulate the system numerically. Furthermore, experiment is carried out to validate the analytical observations. The obtained observations can guide designers in selecting electromechanical resonator parameters for effective energy harvesting from meta-materials.
机译:同时能量收集和振动衰减的研究最近是许多声学元材料调查中的重点。研究报告了使用机电耦合收获电力的可能性;然而,机电谐振器对所获得的带隙边界的影响尚未探讨。在本文中,我们研究了代理耦合到机电谐振器,以证明机电耦合对波传播的影响分析和实验。机电谐振器被分流到外部负载电阻以收获能量。我们得出了系统的分析色散曲线,并显示了不同负载电阻器和机电耦合系数的带结构。为了验证分析分散关系,我们还在数字上模拟了系统。此外,进行实验以验证分析观察。所获得的观察结果可以指导设计者在选择机电谐振器参数中,以便从META材料中获得有效的能量收集。

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