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Systematic Study of Dual Resonant Rectilinear-to-Rotary Motion Converter for Low Frequency Vibrational Energy Harvesting

机译:用于低频振动能量收集的双共振直线转旋转运动转换器的系统研究

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Energy harvesting of environmental vibrations has been an intensive research field for several years, but there are lingering challenges regarding low frequency applications. Building off our recent invention of a multi-stable, broadband electromagnetic harvester relying on a dual resonant, rectilinear-to-rotary motion converter, research detailed in this paper outlines the creation of theoretical models for the dual resonator and systematically examines these models through experiments to further understand the interrelation of key design parameters and to optimize the harvester's performance. More specifically, the dual resonant system converts broadband rectilinear vibrations to rotational motions via magnetic coupling, while frequency up-conversion via magnetic plucking converts low frequency vibrations into high frequency rotations. By combining the advantages of multi-stable nonlinearity, the invented dual resonant energy harvester possesses high power density at low operating frequencies. In this paper, a nonlinear electromechanical model of the dual resonant harvester is established, and the parametric study is conducted for various repulsive magnets configurations. Subsequent experiments validate the theoretical analysis. Systematic analysis of both theoretical and experimental results shows that the initial rotation angle and the configurations among the coupling magnets are critical to determining the operating patterns of the rotor and fully exploiting the potential of magnetic plucking to increase voltage output. The optimized dual resonator is advantageous over the linear harvesters by providing wider low frequency bandwidth via the inherent nonlinear dynamics.
机译:收集环境振动的能量已经成为一个密集的研究领域,但是对于低频应用仍然存在许多挑战。基于我们最近发明的依靠双谐振,直线-旋转运动转换器的多稳定宽带电磁收割机,本文详细研究概述了双谐振器理论模型的创建,并通过实验系统地检查了这些模型。以进一步了解关键设计参数的相互关系,并优化收割机的性能。更具体地,双共振系统通过磁耦合将宽带直线振动转换为旋转运动,而通过磁拔的频率上变频将低频振动转换为高频旋转。通过结合多稳态非线性的优点,本发明的双共振能量收集器在低工作频率下具有高功率密度。本文建立了双共振收割机的非线性机电模型,并针对各种排斥磁体配置进行了参数研究。随后的实验验证了理论分析。对理论和实验结果的系统分析表明,初始旋转角和耦合磁体之间的配置对于确定转子的工作模式以及充分利用磁吸的潜力来增加电压输出至关重要。经过优化的双谐振器通过固有的非线性动力学提供了更宽的低频带宽,因此优于线性采集器。

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