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Optimum resistive loads for vibration-based electromagnetic energy harvesters with a stiffening nonlinearity

机译:具有振动非线性的基于振动的电磁能量采集器的最佳电阻负载

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摘要

The exploitation of nonlinear behavior in vibration-based energy harvesters has received much attention over the last decade. One key motivation is that the presence of nonlinearities can potentially increase the bandwidth over which the excitation is amplified and therefore the efficiency of the device. In the literature, references to resonating energy harvesters featuring nonlinear oscillators are common. In the majority of the reported studies, the harvester powers purely resistive loads. Given the complex behavior of nonlinear energy harvesters, it is difficult to identify the optimum load for this kind of device. In this paper the aim is to find the optimal load for a nonlinear energy harvester in the case of purely resistive loads. This work considers the analysis of a nonlinear energy harvester with hardening compliance and electromagnetic transduction under the assumption of negligible inductance. It also introduces a methodology based on numerical continuation which can be used to find the optimum load for a fixed sinusoidal excitation.
机译:在过去的十年中,基于振动的能量采集器中非线性行为的开发受到了很多关注。一种主要动机是非线性的存在可能会增加激励被放大的带宽,从而增加设备的效率。在文献中,通常提到具有非线性振荡器的谐振能量收集器。在大多数报告的研究中,收割机为纯电阻性负载供电。考虑到非线性能量收集器的复杂行为,很难确定此类设备的最佳负载。本文的目的是在纯电阻性负载的情况下,为非线性能量收集器找到最佳负载。这项工作考虑在假设电感可忽略的情况下分析具有硬化柔韧性和电磁传导的非线性能量收集器。它还介绍了一种基于数值连续性的方法,该方法可用于找到固定正弦激励的最佳负载。

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