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Modal control of mechanically coupled NEMS arrays for tunable RF filters

机译:机械耦合的NEMS阵列用于可调RF滤波器的模态控制

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摘要

A novel tuning strategy of nanoelectromechanical systems (NEMS)-based filters is proposed based on the modal control of mechanically coupled NEMS arrays. This is done by adjusting separately addressed distributed actuation and detection configurations proportionally to desired modal vectors. This control scheme enhances the global output signal, raising the power handling of the filter on all channels. Although the modal control of 1-D arrays exhibits narrow-band responses with adjustable resonance frequency, its application to 2-D arrays produces filters with both adjustable bandwidth and central frequency. One possible realization scheme is suggested by using electrostatically driven coupled NEMS arrays whose transduction gains are adjusted by changing the electrodes¿ bias voltages. Dispersion effects on both 1-D array and 2-D array frequency response are analytically expressed using eigenvalues perturbation theory. Based on these results, we show how to reduce their impact by appropriately choosing the coupling stiffness and the number of resonators.
机译:基于机械耦合NEMS阵列的模态控制,提出了一种基于纳米机电系统(NEMS)的滤波器的新型调谐策略。这是通过与所需模态向量成比例地调整分别寻址的分布式致动和检测配置来完成的。该控制方案增强了全局输出信号,提高了所有通道上滤波器的功率处理能力。尽管一维阵列的模态控制显示出具有可调谐振频率的窄带响应,但将其应用于二维阵列可产生带宽和中心频率可调的滤波器。通过使用静电驱动的耦合NEMS阵列提出了一种可能的实现方案,该阵列的换能增益通过改变电极的偏置电压来调节。使用特征值微扰理论解析地表示了对一维阵列和二维阵列频率响应的色散效应。基于这些结果,我们展示了如何通过适当选择耦合刚度和谐振器数量来减少其影响。

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