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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Nonlinear Operation of Resonant Sensors Based On Weakly Coupled Resonators: Theory and Modeling
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Nonlinear Operation of Resonant Sensors Based On Weakly Coupled Resonators: Theory and Modeling

机译:基于弱耦合谐振器的谐振传感器的非线性操作:理论与建模

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This theoretical work investigates the properties of nonlinearly operated weakly coupled resonators (WCRs) for resonant sensing applications. We propose an analysis framework for mutually injection-locked oscillators (MILOs) and mode-localized oscillators (MOLOs), subject to nonlinear restoring and damping forces. Under some simplifying assumptions, three sensor architectures are investigated and compared, highlighting several common features, such as: 1) the insensitivity of the amplitude ratio output metric to the A-f effect and 2) the instability of one oscillation state above a threshold amplitude. These results are illustrated and validated using transient simulations. Their range of validity is then discussed with finite perturbations, finite bandwidth, measurement noise, and nonlinear dissipation-fluctuation.
机译:这项理论工作研究了用于谐振感应应用的非线性操作的弱耦合谐振器(WCR)的特性。我们为相互注入锁定的振荡器(MILO)和模式局部化的振荡器(MOLO)提出了一个分析框架,该框架受非线性恢复和阻尼力的影响。在一些简化的假设下,对三种传感器架构进行了研究和比较,突出了几个共同的特征,例如:1)振幅比输出度量对A-f效应不敏感; 2)在阈值振幅以上的一种振荡状态的不稳定性。使用瞬态仿真对这些结果进行了说明和验证。然后通过有限摄动,有限带宽,测量噪声和非线性耗散波动来讨论其有效范围。

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