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A STUDY OF SUBHARMONIC EXCITATION OF MECHANICALLY COUPLED MICROBEAMS FOR FILTRATION

机译:机械耦合微观耦合过滤的次谐波激发研究

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We study the feasibility of employing subharmonic resonance of order one-half to create a bandpass filter using two clamped-clamped microbeam resonators connected by a weak coupling beam. We discretize the distributed-parameter system using the Galerkin procedure to obtain a reduced-order model composed of two nonlinear coupled ODEs. It accounts for geometric and electric nonlinearities as well as the coupling between these two fields. Using the method of multiple scales, we determine four first-order nonlinear ODEs describing the amplitudes and phases of the modes. We use these equations to determine closed-form expressions for the static and dynamic deflections of the structure. The basis functions in the discretization are the linear undamped global mode shapes of the unactuated structure. We found that we can not produce a single-valued response for small excitation amplitudes. So that, it is impractical to use a single structure made of two mechanically coupled beams excited subharmonically in nitration. But we can use a pair of structures to build a bandpass filter by operating one in the softening domain and the other in the hardening domain and, more importantly, implementing processing logic and hardware schemes. However, the complications brought about by mechanically coupling of two microbeams can be avoided by using a pair of uncoupled beams. This makes the fabrication and modeling processes much easier. Using subharmonic excitation with mechanically uncoupled microbeams to realize bandpass filters is the subject of the next work.
机译:我们研究了使用弱耦合光束连接的两个夹紧夹紧的微波谐振器来创建带通滤波器的次谐振共振的可行性。我们使用Galerkin程序离散参数系统,以获得由两个非线性耦合ODES组成的阶阶模型。它占几何和电力非线性以及这两个领域之间的耦合。使用多种尺度的方法,确定描述了描述模式的幅度和阶段的四个一阶非线性杂物。我们使用这些方程来确定结构的静态和动态偏转的闭合表达式。在离散化的基础函数是unactaive结构的线性下降的全局模式形状。我们发现我们不能产生对小激发幅度的单值响应。这样,使用由次数在硝化的次数激发两个机械耦合光束的单个结构是不切实际的。但是,我们可以使用一对结构通过在硬化域中的软化域中操作一个结构来构建带通滤波器,更重要的是,实现处理逻辑和硬件方案。然而,通过使用一对非耦合的光束,可以避免通过机械耦合带来的并发症。这使得制造和建模过程更容易。利用机械解耦的微观辐射使用次谐波激发来实现带通滤波器是下一个工作的主题。

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