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首页> 外文期刊>Journal of Sound and Vibration >Combining magnet-induced nonlinearity and centrifugal softening effect to realize high-efficiency energy harvesting in ultralow-frequency rotation
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Combining magnet-induced nonlinearity and centrifugal softening effect to realize high-efficiency energy harvesting in ultralow-frequency rotation

机译:结合磁体诱导的非线性和离心式软化效果,实现超级频率旋转中的高效能量收获

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摘要

Few studies have successfully achieved high-efficiency energy harvesting in ultralowfrequency rotational motion where the rotational frequency is less than 2 Hz (120 rpm). In order to solve this challenge, this paper proposes a novel energy harvester with the centrifugal softening effect (CSE) and the magnet-induced nonlinearity. In a rotational coordinate system, the corresponding theoretical model is derived to reveal the mechanism of the CSE and to analyze the influence of the nonlinear magnetic force on the output power of the proposed harvester. Furthermore, the mechanism of the centrifugal stiffening effect (C_stiffen_E) is also theoretically analyzed. The analysis results indicate that based on the C_stiffen_E, the self-tuning harvester with a wider bandwidth can be obtained, and the CSE is better than the C_stiffen_E in enhancing the ultralow-frequency rotational energy harvesting. Meanwhile, the derived model is experimentally validated via comparisons among different piezoelectric energy harvesters (PEHs) including the linear inverse PEH, the nonlinear inverse PEH and the nonlinear forward PEH. The experimental results show that the nonlinear inverse PEH combining the magnet-induced nonlinearity and the CSE is capable of realizing high-efficiency energy harvesting in the rotational speed range of 60-120 rpm. The corresponding RMS output voltage is larger than 4 V, which is promising to provide the continuous power source for a wireless sensor. In addition, the parametric studies are conducted to provide theoretical guidance for the further optimization design of the proposed PEH.
机译:很少有研究成功地在旋转频率小于2 Hz(120 rpm)的超低频旋转运动中实现高效能量收集。为了解决这一挑战,本文提出了一种具有离心软化效应(CSE)和磁感应非线性的新型能量采集器。在旋转坐标系下,推导了相应的理论模型,揭示了CSE的机理,并分析了非线性磁力对收割机输出功率的影响。此外,还从理论上分析了离心加劲效应的机理。分析结果表明,基于C_-stighed_E的自校正收获机可以获得更宽的带宽,并且CSE在增强超低频旋转能量收获方面优于C_-stighed_E。同时,通过比较线性逆压电能量采集器、非线性逆压电能量采集器和非线性正压电能量采集器,对所建立的模型进行了实验验证。实验结果表明,将磁感应非线性与CSE相结合的非线性逆PEH能够在60-120rpm转速范围内实现高效能量收集。相应的均方根输出电压大于4V,有望为无线传感器提供连续的电源。此外,还进行了参数研究,为进一步优化设计PEH提供了理论指导。

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