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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Pole-Perturbation Theory for Nonlinear Noise Analysis of All-Pole RF MEMS Tunable Filters
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Pole-Perturbation Theory for Nonlinear Noise Analysis of All-Pole RF MEMS Tunable Filters

机译:极点摄动理论用于全极点RF MEMS可调滤波器的非线性噪声分析

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This paper presents a theoretical approach to predict the effect of nonlinear noise mechanisms in all-pole RF microelectromechanical systems (MEMS) tunable filters. It is shown that both nonlinearity and noise can be expressed as perturbations of poles of the filter transfer function. Perturbations in the bandpass filter are mapped into its equivalent ladder network as perturbations in the prototype element values. Closed-form equations are derived to calculate pole-perturbations in Butterworth and Chebyshev filters using prototype perturbations. The proposed method is then used to calculate the effect of nonlinear noise phenomena due to Brownian motion in RF MEMS tunable filters for different input power levels. As a result, the filter phase noise is calculated as a function of input power, tuning state, fractional bandwidth, filter order, and frequency offset. The effect of filter nonidealities and their implications on phase noise are discussed. Finally, it is shown that signal-to-noise ratio degradation due to filter phase noise is most significant in MEMS tunable filters with low bandwidth, high order, and high quality factor.
机译:本文提出了一种理论方法来预测非线性噪声机制在全极点RF微机电系统(MEMS)可调滤波器中的作用。结果表明,非线性和噪声都可以表示为滤波器传递函数极点的摄动。带通滤波器中的扰动作为原型元素值中的扰动映射到其等效梯形网络中。导出了闭合形​​式的方程,以使用原型扰动来计算Butterworth和Chebyshev滤波器中的极点扰动。然后,针对不同的输入功率水平,将所提出的方法用于计算由于布朗运动引起的非线性噪声现象对RF MEMS可调滤波器的影响。结果,根据输入功率,调谐状态,分数带宽,滤波器阶数和频率偏移来计算滤波器的相位噪声。讨论了滤波器非理想性的影响及其对相位噪声的影响。最后,表明在低带宽,高阶和高品质因数的MEMS可调滤波器中,由滤波器相位噪声引起的信噪比降低最为明显。

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