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Review of nonlinear vibration energy harvesting: Duffing, bistability, parametric, stochastic and others

机译:回顾非线性振动能量收集:达芬奇,双稳态,参数化,随机等

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摘要

Vibration energy harvesting typically involves a mechanical oscillatory mechanism to accumulate ambient kinetic energy, prior to the conversion to electrical energy through a transducer. The convention is to use a simple linear mass-spring-damper oscillator with its resonant frequency tuned towards that of the vibration source. In the past decade, there has been a rapid expansion in research of vibration energy harvesting into various nonlinear vibration principles such as Duffing nonlinearity, bistability, parametric oscillators, stochastic oscillators and other nonlinear mechanisms. The intended objectives for using nonlinearity include broadening of frequency bandwidth, enhancement of power amplitude and improvement in responsiveness to non-sinusoidal noisy excitations. However, nonlinear vibration energy harvesting also comes with its own challenges and some of the research pursuits have been less than fruitful. Previous reviews in the literature have either focussed on bandwidth enhancement strategies or converged on select few nonlinear mechanisms. This article reviews eight major types of nonlinear vibration energy harvesting reported over the past decade, covering underlying principles, advantages and disadvantages, and application-specific guidance for researchers and designers.
机译:在通过换能器转换为电能之前,振动能量的收集通常涉及一种机械振荡机制,以积累环境动能。惯例是使用简单的线性质量弹簧阻尼器振荡器,其谐振频率朝着振动源的方向调整。在过去的十年中,振动能量收集的研究迅速扩展到各种非线性振动原理,例如Duffing非线性,双稳态,参数振荡器,随机振荡器和其他非线性机制。使用非线性的预期目标包括拓宽频率带宽,提高功率幅度以及改善对非正弦噪声激励的响应能力。但是,非线性振动能量的收集也面临着自身的挑战,一些研究工作还没有取得成果。文献中的先前评论要么集中在带宽增强策略上,要么集中在少数非线性机制上。本文回顾了过去十年中报告的八种主要类型的非线性振动能量收集,涵盖了基本原理,优点和缺点以及针对研究人员和设计人员的特定于应用程序的指南。

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