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Energy harvesting in a nonlinear cantilever beam system excited by harmonic and random vibrations

机译:谐波和随机振动激发的非线性悬臂梁系统的能量收集

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The nonlinear beam with vertical combined excitations is proposed as an energy harvester. The system is modelled as a cantilever beam with included a tip mass and piezoelectric patches which transduce the bending strains induced by both, the harmonic and as an additive stochastic forces. The excitation affects in vertical directions by kinematic forcing into electrical charge. The main goal is to analyse the dynamics of the electro-mechanical beam system and the influence of the mixed excitation forces into an effectiveness of the energy harvesting. Overcoming the potential barrier by the beam system is also analysed, where large output amplitudes occur. Such region of the vibration affects more power generation as well as voltage spikes, which is crucial in terms of load resistors sensitivities. By increasing the additive noise level with fixed harmonic force we observe the transition from single well oscillations to inter-well stochastic jumps, and the output power is measured during different system behaviours.
机译:提出了具有垂直组合激励的非线性光束作为能量收割机。该系统被建模为悬臂梁,其中包括尖端质量和压电贴片,其通过谐波和添加剂随机力传递谐波和添加剂的弯曲菌株。通过运动迫使电荷施加电荷,激发会影响垂直方向。主要目标是分析机电梁系统的动态,以及混合激发力的影响成为能量收集的有效性。还分析了光束系统的潜在屏障,其中发生大输出幅度。这种振动区域影响了更多的发电以及电压尖峰,这在负载电阻器灵敏度方面至关重要。通过提高具有固定谐波的附加噪声水平,我们观察从单个孔振荡到井间随机跳跃的过渡,并且在不同的系统行为期间测量输出功率。

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