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Equivalent damping and frequency change for linear and nonlinear hybrid vibrational energy harvesting systems

机译:线性和非线性混合振动能量采集系统的等效阻尼和频率变化

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A unified approximation method is derived to illustrate the effect of electro-mechanical coupling on vibration-based energy harvesting systems caused by variations in damping ratio and excitation frequency of the mechanical subsystem. Vibrational energy harvesters are electro-mechanical systems that generate power from the ambient oscillations. Typically vibration-based energy harvesters employ a mechanical subsystem tuned to resonate with ambient oscillations. The piezoelectric or electromagnetic coupling mechanisms utilized in energy harvesters, transfers some energy from the mechanical subsystem and converts it to an electric energy. Recently the focus of energy harvesting community has shifted toward nonlinear energy harvesters that are less sensitive to the frequency of ambient vibrations. We consider the general class of hybrid energy harvesters that use both piezoelectric and electromagnetic energy harvesting mechanisms. Through using perturbation methods for low amplitude oscillations and numerical integration for large amplitude vibrations we establish a unified approximation method for linear, softly nonlinear, and bi-stable nonlinear energy harvesters. The method quantifies equivalent changes in damping and excitation frequency of the mechanical subsystem that resembles the backward coupling from energy harvesting. We investigate a novel nonlinear hybrid energy harvester as a case study of the proposed method. The approximation method is accurate, provides an intuitive explanation for backward coupling effects and in some cases reduces the computational efforts by an order of magnitude.
机译:推导了统一的近似方法来说明机电耦合对基于振动的能量收集系统的影响,该振动是由机械子系统的阻尼比和激励频率的变化引起的。振动能量收集器是一种机电系统,可以从周围的振动中产生能量。通常,基于振动的能量收集器采用经过调整的机械子系统,以与周围的振动产生共振。能量收集器中使用的压电或电磁耦合机制将机械子系统中的一些能量转移并将其转换为电能。最近,能量收集社区的焦点已转向对环境振动频率不太敏感的非线性能量收集器。我们考虑使用压电和电磁能量收集机制的混合能量收集器的一般类别。通过使用低振幅振荡的摄动方法和大振幅振动的数值积分,我们为线性,软非线性和双稳态非线性能量收集器建立了统一的近似方法。该方法量化了机械子系统的阻尼和激励频率的等效变化,该变化类似于能量收集的反向耦合。我们研究了一种新型的非线性混合能量采集器,作为该方法的案例研究。近似方法是准确的,为反向耦合效应提供了直观的解释,并且在某些情况下将计算量减少了一个数量级。

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