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Vibration energy harvesting from impulsive excitations via a bistable nonlinear attachment-Experimental study

机译:通过双稳态非线性附着实验研究从脉冲激发的振动能量收获

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A bistable nonlinear electromagnetic energy harvester coupled to an impulsively excited primary linear oscillator has been experimentally investigated. The design of the energy harvesting system was guided by a preliminary numerical study, which predicted a favorable dynamic regime for harvesting purposes. The harvesting system consisted of a lightweight permanent magnet, moving within a stationary coil, nonlinearly coupled to a grounded, weakly damped linear oscillator through a prebuckled, bistable slender steel beam which exhibited both cubic nonlinear and negative linear stiffness behaviors in transverse response along its weak axis. This paper provides the results of an experimental investigation, illustrating the capacity of the bistable element to dramatically enhance harvesting efficiency when subjected to broadband, low-amplitude vibration, executing large amplitude oscillations between the two stable equilibrium positions. Single and repeated impulses of varying amplitude applied to the LO are employed as system inputs, and it is shown, both experimentally and through numerical simulations, that robust harvesting efficiency is achieved primarily through periodic cross-well oscillations, particularly at low levels of input energy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过实验研究了耦合到冲动激发的主线性振荡器的双稳态非线性电磁能量收割机。能量收集系统的设计是由初步数值研究引导的,这预测了用于收获目的的有利动态制度。收获系统由轻质的永磁体组成,在固定线圈内移动,通过预定的双稳态细长钢束,非线性地耦合到接地的弱阻尼的线性振荡器,其沿其弱响应呈横向响应的立方非线性和负线性刚度行为。轴。本文提供了一种实验研究的结果,示出了当经受宽带,低幅度振动时显着增强收获效率的实验研究的结果,在两个稳定的平衡位置之间执行大的幅度振荡。施加到LO的单个和重复脉冲施加到LO的变化幅度作为系统输入,并且示出了实验和通过数值模拟,其主要通过周期性交叉井振荡来实现鲁棒收获效率,特别是在低水平的输入能量下实现。 (c)2018年elestvier有限公司保留所有权利。

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