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A parametric analysis of the nonlinear dynamics of bistable vibration-based piezoelectric energy harvesters

机译:基于双稳态振动压电能收割机非线性动力学的参数分析

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Piezoelectric materials exhibit electromechanical coupling properties and have been gained importance over the last few decades due to their broad range of applications. Vibration-based energy harvesting systems have been proposed using the direct piezoelectric effect by converting mechanical into electrical energy. Although the great relevance of these systems, performance enhancement strategies are essential to improve the applicability of these system and have been studied substantially. This work addresses a numerical investigation of the influence of cubic polynomial nonlinearities in energy harvesting systems considering a bistable structure subjected to harmonic excitation. A deep parametric analysis is carried out employing nonlinear dynamics tools. Results show complex dynamical behaviors associated with the trigger of inter-well motion. Electrical power output and efficiency are monitored in order to evaluate the configurations associated with best system performances.
机译:压电材料表现出机电耦合特性,由于其广泛的应用,在过去几十年中获得了重要性。通过将机械转换成电能,使用直接压电效果提出了基于振动的能量收集系统。虽然这些系统的巨大相关性,但性能增强策略对于提高这些系统的适用性至关重要,并且已经大量研究。这项工作解决了考虑到谐波激发的双稳态结构的能量收集系统中立方多项式非线性影响的数值研究。采用非线性动力学工具进行深度参数分析。结果显示与井间运动的触发器相关的复杂动态行为。监控电力输出和效率,以评估与最佳系统性能相关的配置。

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