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A magnetic levitation-based tristable hybrid energy harvester for scavenging energy from low-frequency structural vibration

机译:一种基于磁悬浮的耐动式混合能源收割机,用于从低频结构振动中清除能量

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摘要

A magnetic levitation-based hybrid energy harvester is proposed in this work. The new harvester consists of a tristable nonlinearity-enhanced mechanism that not only enhances the energy transfer through resonant inter-well oscillations, and also offers a wider bandwidth under low-frequency excitation levels. This integrated unit that combines a slider-driven electromagnetic generator (EMG) and a sliding-mode triboelectric nanogenerator (TENG) can harness more energy from vibration motions, thus resulting in a higher power density. In this study, both theoretical modelling and experimental studies are presented to investigate the dynamic characterization of the mechanical design, in which only four outer magnets are deployed on a plane to establish a triple-well nonlinear behaviour. Magnetic forces of this harvester are calculated by the magnetizing current method and the formation of tri-stable potential wells in the dynamic system is verified by a bifurcation analysis. In addition, a prototype of the harvester is fabricated and tested by an electrodynamic shaker system. The results show that the prototype exhibits a frequency bandwidth of 3-8 Hz and generates an output power of 6.9 mW and 6.44 mW in both horizontal and vertical orientations at a frequency of 8 Hz and 1 g acceleration, respectively. A performance study is also conducted to show that the proposed technique can produce sufficient power output as compared to other electromagnetic-triboelectric devices.
机译:在这项工作中提出了一种基于磁性悬浮的混合能量收割机。新的收割机包括追溯非线性增强的机制,增强了通过谐振间振荡的能量转移,并且还在低频激励水平下提供更广泛的带宽。该集成单元,其结合了滑块驱动的电磁发生器(EMG)和滑动模式摩擦纳米料(滕)可以利用振动运动的能量更多,从而导致更高的功率密度。在这项研究中,提出了理论上建模和实验研究,以研究机械设计的动态表征,其中仅在平面上展开四个外部磁体以建立三孔非线性行为。通过磁化电流方法计算该收割机的磁力,并通过分叉分析验证动态系统中的三稳态潜在孔的形成。此外,通过电动振动器系统制造和测试收割机的原型。结果表明,原型呈现为3-8Hz的频率带宽,分别以8Hz的频率和1g加速度的水平和垂直方向产生6.9 mw和6.44 mw的输出功率。还进行了性能研究以表明,与其他电磁摩擦装置相比,所提出的技术可以产生足够的功率输出。

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