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An analytical approach for predicting the energy capture and conversion by impulsively-excited bistable vibration energy harvesters

机译:预测由脉冲激励双稳态振动能量采集器捕获和转换能量的分析方法

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Impulsive energies are abundant throughout the natural and built environments, for instance as stimulated by wind gusts, foot-steps, or vehicle-road interactions. In the interest of maximizing the sustainability of society's technological developments, one idea is to capture these high-amplitude and abrupt energies and convert them into usable electrical power such as for sensors which otherwise rely on less sustainable power supplies. In this spirit, the considerable sensitivity to impulse-type events previously uncovered for bistable oscillators has motivated recent experimental and numerical studies on the power generation performance of bistable vibration energy harvesters. To lead to an effective and efficient predictive tool and design guide, this research develops a new analytical approach to estimate the electroelastic response and power generation of a bistable energy harvester when excited by an impulse. Comparison with values determined by direct simulation of the governing equations shows that the analytically predicted net converted energies are very accurate for a wide range of impulse strengths. Extensive experimental investigations are undertaken to validate the analytical approach and it is seen that the predicted estimates of the impulsive energy conversion are in excellent agreement with the measurements, and the detailed structural dynamics are correctly reproduced. As a result, the analytical approach represents a significant leap forward in the understanding of how to effectively leverage bistable structures as energy harvesting devices and introduces new means to elucidate the transient and far-from equilibrium dynamics of nonlinear systems more generally. (C) 2016 Elsevier Ltd. All rights reserved.
机译:脉冲能量在整个自然和建筑环境中都很丰富,例如,由于阵风,脚步声或车辆与道路的相互作用而受到刺激。为了最大程度地提高社会技术发展的可持续性,一个想法是捕获这些高振幅和突变的能量,并将其转换为可用的电能,例如用于传感器,否则它们将依赖于可持续性较差的电源。本着这种精神,对先前发现的双稳态振荡器的脉冲型事件具有相当高的敏感性,这促使人们对双稳态振动能量收集器的发电性能进行了最新的实验和数值研究。为了提供有效的预测工具和设计指南,本研究开发了一种新的分析方法来估算双稳态能量收集器在受到脉冲激励时的电弹性响应和发电量。与直接模拟控制方程所确定的值的比较表明,对于宽范围的脉冲强度,分析预测的净转换能量非常准确。进行了广泛的实验研究,以验证该分析方法,并且可以看到,脉冲能量转换的预测估计值与测量值非常吻合,并且详细地再现了详细的结构动力学。结果,分析方法代表了对如何有效利用双稳态结构作为能量收集装置的理解的重大飞跃,并引入了新的方法来更普遍地阐明非线性系统的瞬态和远离平衡的动力学。 (C)2016 Elsevier Ltd.保留所有权利。

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