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Modeling Investigation of a Nonlinear Vibrational Energy Harvester

机译:非线性振动能量采集器的建模研究

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In last years the authors have investigated nonlinear systems for vibrational energy harvesting. Nonlinear configurations have been demonstrated that, under the proper conditions, can provide better performance, compared to linear resonant oscillators, in terms of the amount of energy extracted from environmental wide spectrum mechanical vibrations. In particular, the authors presented the results of investigations on a system exploiting the advantages of a nonlinear bistable Snap-Through-Buckling (STB) configuration and two piezoelectric transducers placed at the locations of the two stable states (the position of the two minima of the bistable potential underpinning the dynamics of the system). The device investigated was shown to be capable of providing sufficient electrical energy to power an RF transmitter. However, in order to properly design the harvester an analytical model is necessary. The authors are investigating different nonlinear models. In this work, a comparison between two different theoretical models for the STB beam is discussed.
机译:近年来,作者研究了用于振动能量收集的非线性系统。已经证明,与线性谐振振荡器相比,就从环境广谱机械振动中提取的能量而言,在适当的条件下,非线性配置可以提供更好的性能。尤其是,作者介绍了利用非线性双稳态Snap-Through-Buckling(STB)配置的优势以及将两个压电换能器置于两个稳定状态的位置(两个极小值的位置)的系统的研究结果。支撑系统动态的双稳态潜力)。已证明所研究的设备能够提供足够的电能来为RF发射机供电。但是,为了正确设计收割机,需要一个分析模型。作者正在研究不同的非线性模型。在这项工作中,讨论了STB光束的两种不同理论模型之间的比较。

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