Hysteresis Suppression in Coupled Resonators Under Simultaneous Primary and Superharmonic Excitations

Ming Lyu, Jian Zhao, N. Kacem, J. Song, Rongjian Sun, Pengbo Liu
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Abstract

A general model of two resonators subjected to electrostatic coupling and simultaneous primary and superharmonic excitations is developped. A reduced-order model including quadratic and cubic nonlinear terms is generated and the multi-scale method is used to solve the dynamic characteristics and analyze the contribution of the different frequency components. In addition, an overall nonlinear coefficient is defined, which can be adjusted to make the system exhibit different dynamic characteristics including softening, hardening, and linear behaviors. Finally, the conditions for restoring the linear behavior at the highest possible amplitude and suppressing its hysteresis are given.
一次谐波和超谐波同步激励下耦合谐振腔的磁滞抑制
建立了两个谐振腔在静电耦合和一次谐波和超谐波同时激励下的一般模型。建立了包含二次和三次非线性项的降阶模型,并采用多尺度方法求解了系统的动态特性,分析了不同频率分量对系统的贡献。此外,定义了一个整体非线性系数,该系数可调节,使系统表现出不同的动态特性,包括软化、硬化和线性行为。最后,给出了在最大可能幅值下恢复线性特性并抑制其迟滞的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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