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Vibration energy harvesting from impulsive excitations via a bistable nonlinear attachment

机译:通过双稳态非线性附件从脉冲激励中收集振动能量

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A vibration-based bistable electromagnetic energy harvester coupled to a directly excited primary system is examined numerically. The primary goal of the study is to investigate the potential benefit of the bistable element for harvesting broadband and low-amplitude vibration energy. The considered system consists of a grounded, weakly damped, linear oscillator (LO) coupled to a light-weight, weakly damped oscillator by means of an element which provides both cubic nonlinear and negative linear stiffness components and electromechanical coupling elements. Single and repeated impulses with varying amplitude applied to the LO are the vibration energy sources considered. A thorough sensitivity analysis of the system's key parameters provides design insights for a bistable nonlinear energy harvesting (BNEH) device able to achieve robust harvesting efficiency. This is achieved through the exploitation of three BNEH main dynamical regimes; namely, periodic cross-well, aperiodic (chaotic) cross-well, and in-well oscillations.
机译:基于振动的双稳态电磁能量采集器耦合到直接励磁的初级系统进行了数值检查。该研究的主要目的是研究双稳态元件对收获宽带和低振幅振动能量的潜在好处。所考虑的系统由接地的,弱阻尼的线性振荡器(LO)组成,该振荡器通过提供立方非线性和负线性刚度分量的元件以及机电耦合元件耦合到轻量,弱阻尼的振荡器。施加到本振的振幅变化的单个和重复脉冲是所考虑的振动能源。对系统关键参数的全面灵敏度分析为双稳态非线性能量收集(BNEH)设备提供了设计见解,该设备能够实现强大的收集效率。这是通过利用三种BNEH主要动力机制来实现的;即周期性的井间,非周期(混沌)井间和井内振荡。

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