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Parametric Analysis and Experimental Verification of a Hybrid Vibration Energy Harvester Combining Piezoelectric and Electromagnetic Mechanisms

机译:压电与电磁机理相结合的混合振动能量采集器的参数分析与实验验证

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Considering coil inductance and the spatial distribution of the magnetic field, this paper developed an approximate distributed-parameter model of a hybrid energy harvester (HEH). The analytical solutions were compared with numerical solutions. The effects of load resistances, electromechanical coupling factors, mechanical damping ratio, coil parameters and size scale on performance were investigated. A meso-scale HEH prototype was fabricated, tested and compared with a stand-alone piezoelectric energy harvester (PEH) and a stand-alone electromagnetic energy harvester (EMEH). The peak output power is 2.93% and 142.18% higher than that of the stand-alone PEH and EMEH, respectively. Moreover, its bandwidth is 108%- and 122.7%-times that of the stand-alone PEH and EMEH, respectively. The experimental results agreed well with the theoretical values. It is indicated that the linearized electromagnetic coupling coefficient is more suitable for low-level excitation acceleration. Hybrid energy harvesting contributes to widening the frequency bandwidth and improving energy conversion efficiency. However, only when the piezoelectric coupling effect is weak or medium can the HEH generate more power than the single-mechanism energy harvester. Hybrid energy harvesting can improve output power even at the microelectromechanical systems (MEMS) scale. This study presents a more effective model for the performance evaluation and structure optimization of the HEH.
机译:考虑线圈电感和磁场的空间分布,本文建立了混合能量收集器(HEH)的近似分布参数模型。将解析解与数值解进行了比较。研究了负载电阻,机电耦合系数,机械阻尼比,线圈参数和尺寸尺度对性能的影响。制造,测试了中观规模的HEH原型,并将其与独立的压电能量收集器(PEH)和独立的电磁能量收集器(EMEH)进行了比较。峰值输出功率分别比独立的PEH和EMEH高2.93%和142.18%。此外,其带宽分别是独立PEH和EMEH的108%-和122.7%-倍。实验结果与理论值吻合良好。结果表明,线性化的电磁耦合系数更适合于低电平激励。混合能量收集有助于拓宽频率带宽并提高能量转换效率。但是,仅当压电耦合效应较弱或中等时,HEH才能产生比单机械能能量采集器更多的功率。混合能量收集甚至可以在微机电系统(MEMS)规模上提高输出功率。这项研究为HEH的性能评估和结构优化提供了一个更有效的模型。

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