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Nonlinear mode coupling in a MEMS resonator

机译:MEMS谐振器中的非线性模式耦合

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A single micro-electromechanical (MEMS) resonator can be shown to exhibit behaviors unexpected in a simple resonant structure. For small driving forces, the resonator displays typical simple harmonic oscillator response. As the driving force is increased, the resonator shows the slightly more complex, but well understood, Duffing response. Rather unexpected response behavior can appear when the resonator frequency is detuned by nonlinear-ity to where two oscillatory modes of the resonator begin to interact through nonlinear coupling due to an internal resonance. The paper focuses on how the resonator response changes as the internal resonance is approached in the operating parameter space and how that behavior is conveniently represented in a bifurcation diagram. This behavior is accurately captured by a generic mathematical model. We describe an analysis of the model which shows how this coupled response varies with the system and drive parameters, especially focusing on the nonlinear coupling strength between the two modes.
机译:可以显示单个微机电(MEMS)谐振器在简单的谐振结构中表现出出乎意料的行为。对于较小的驱动力,谐振器显示典型的简单谐波振荡器响应。随着驱动力的增加,谐振器显示出稍微复杂但众所周知的达芬响应。当谐振器频率由于非线性而失谐到谐振器的两个振荡模式由于内部谐振而开始通过非线性耦合进行交互时,可能会出现意外的响应行为。本文关注的是在工作参数空间中随着内部共振的临近,共振器的响应如何变化,以及在分叉图中如何方便地表示这种行为。通用数学模型可以准确地捕获此行为。我们描述了对该模型的分析,该模型显示了该耦合响应如何随系统和驱动参数而变化,尤其着重于两种模式之间的非线性耦合强度。

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