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Random Effects in a Nonlinear Vibration-Based Piezoelectric Energy Harvesting System

机译:基于非线性振动压电能量收集系统的随机效应

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Vibration-based energy harvesting is of increasing importance and there is a current challenge to improve energy harvesting capacity exploiting nonlinear and random effects. This article investigates random effects in a nonlinear energy harvesting system. The system is represented by a magnetoelastic structure with two piezoceramic layers attached to the root of a cantilever beam, obtaining a bimorph generator. The energy harvesting system is subjected to three excitation conditions: pure harmonic, pure random and a combination of harmonic and random excitations. Noise-to-Signal Ratio (NSR) is employed to quantify different combinations of the forcing terms, establishing a procedure to evaluate the system performance. This approach is based on Power Spectral Density (PSD) of input and output signals. Numerical simulations are carried out, identifying the better combinations of harmonic and random excitations for energy harvesting purposes. Discussions about the influence of the kind of response are carried out evaluating the differences between periodic and chaotic motions. Conclusions show that both random and nonlinear effects can be tuned in order to enhance energy harvesting capacity.
机译:基于振动的能量收集的重要性越来越重要,并且存在目前的挑战,以改善利用非线性和随机效应的能量收集能力。本文研究了非线性能量收集系统中的随机效应。该系统由磁性结构表示,磁性结构具有连接到悬臂梁的根部的两个压电陶瓷层,获得Bimorph发生器。能量收集系统受到三种激发条件:纯谐波,纯随机和谐波和随机激发的组合。噪声到信号比(NSR)被用于量化强制术语的不同组合,建立评估系统性能的过程。该方法基于输入和输出信号的功率谱密度(PSD)。进行数值模拟,确定能量收集目的的谐波和随机激发的更好组合。关于对响应的影响的讨论进行了评估了周期性和混沌动作之间的差异。结论表明,可以调整随机和非线性效果,以提高能量收集能力。

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