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State-space harmonic distortion modeling in weakly nonlinear, fully balanced Gm-C filters-a modular approach resulting in closed-form solutions

机译:弱非线性,完全平衡的Gm-C滤波器中的状态空间谐波失真建模-一种模块化方法,可得出封闭式解决方案

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State space harmonic distortion modeling and estimation are introduced for Gm-C filters with fully balanced, weakly nonlinear tranconductors. The proposed method provides compact closed-form answers expressed explicitly in terms of the values of the circuit elements. It can be easily implemented in MATLAB and applied to Gm-C filters of any order. The filter is viewed as a composition of three operators in signal space representing the input stage, the filter core, and the output stage. Each operator is then decomposed into the superposition of a linear operator and a nonlinear operator. The total distortion at the output is shown to be approximately the sum of the distortion introduced by the nonlinear operator of each stage. The theoretical results are found to be in good agreement with Cadence simulations for the cases of a lossy integrator and a third-order Butterworth low-pass filter.
机译:介绍了具有完全平衡,弱非线性跨导的Gm-C滤波器的状态空间谐波失真建模和估计。所提出的方法提供了以电路元件的值明确表达的紧凑的闭合形式的答案。它可以轻松地在MATLAB中实现,并应用于任何数量的Gm-C滤波器。滤波器被视为信号空间中三个运算符的组合,分别代表输入级,滤波器核心和输出级。然后将每个算子分解为线性算子和非线性算子的叠加。所示的输出总失真约为每一级非线性算子引入的失真之和。对于有损积分器和三阶巴特沃斯低通滤波器,理论结果与Cadence模拟非常吻合。

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