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Interplay between electrical and mechanical domains in a high performance nonlinear energy harvester

机译:高性能非线性能量采集器中电气和机械域之间的相互作用

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This paper reports a comprehensive experimental characterization and modeling of a compact nonlinear energy harvester for low frequency applications. By exploiting the interaction between the electrical circuitry and the mechanical motion of the device, we are able to improve the power output over a large frequency range. This improvement is quantified using a new figure of merit based on a suitably defined 'power integral (P-f)' for nonlinear vibrational energy harvesters. The developed device consists of beams with fixed-guided configuration which produce cubic monostable nonlinearity due to stretching strain. Using a high efficiency magnetic circuit a maximum output power of 488.47 mu W across a resistive load of 4000 Omega under 0.5g input acceleration at 77 Hz frequency with 9.55 Hz of bandwidth is obtained. The dynamical characteristics of the device are theoretically reproduced and explained by a modified nonlinear Duffing oscillator model.
机译:本文报告了用于低频应用的紧凑型非线性能量采集器的全面实验表征和建模。通过利用电路与设备机械运动之间的相互作用,我们能够在较大的频率范围内改善功率输出。使用针对非线性振动能量收集器的适当定义的“功率积分(P-f)”,使用新的品质因数来量化此改进。所开发的设备由具有固定导向结构的梁组成,该梁由于拉伸应变而产生立方单稳态非线性。使用高效磁路,在0.5 g输入加速度下,在77 Hz频率和9.55 Hz带宽下,在4000Ω电阻负载下,最大输出功率为488.47μW。该器件的动态特性在理论上通过修改后的非线性Duffing振荡器模型进行了复制和解释。

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