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Influence of combined fundamental potentials in a nonlinear vibration energy harvester

机译:非线性振动能量采集器中组合基本势的影响

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摘要

Ambient mechanical vibrations have emerged as a viable energy source for low-power wireless sensor nodes aiming the upcoming era of the ‘Internet of Things’. Recently, purposefully induced dynamical nonlinearities have been exploited to widen the frequency spectrum of vibration energy harvesters. Here we investigate some critical inconsistencies between the theoretical formulation and applications of the bistable Duffing nonlinearity in vibration energy harvesting. A novel nonlinear vibration energy harvesting device with the capability to switch amidst individually tunable bistable-quadratic, monostable-quartic and bistable-quartic potentials has been designed and characterized. Our study highlights the fundamentally different large deflection behaviors of the theoretical bistable-quartic Duffing oscillator and the experimentally adapted bistable-quadratic systems, and underlines their implications in the respective spectral responses. The results suggest enhanced performance in the bistable-quartic potential in comparison to others, primarily due to lower potential barrier and higher restoring forces facilitating large amplitude inter-well motion at relatively lower accelerations.
机译:针对即将到来的“物联网”时代,环境机械振动已成为低功率无线传感器节点的可行能源。近来,已经有意地引入了动态非线性,以扩大振动能量收集器的频谱。在这里,我们研究了双稳态Duffing非线性在振动能量收集中的理论公式和应用之间的一些严重不一致。设计并表征了一种新颖的非线性振动能量采集装置,该装置能够在可单独调节的双稳态二次,单稳态二次和双稳态二次电位之间切换。我们的研究突出了理论上的双稳态四次Duffing振荡器和实验适应的双稳态二次系统的根本不同的大偏转行为,并强调了它们在各自的光谱响应中的含义。结果表明,与其他相比,双稳态四元势的性能得到了增强,这主要是由于较低的势垒和较高的恢复力促进了相对较低加速度下的大幅度井间运动。

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