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Analysis of frequency estimation MSE for all-pass-based adaptive IIR notch filters with normalized lattice structure

机译:具有归一化晶格结构的全通自适应IIR陷波滤波器的频率估计MSE分析

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摘要

This paper theoretically analyzes the Mean Square Error (MSE) on the steady-state frequency estimation realized by the all-pass-based adaptive notch filtering algorithms with the normalized lattice structure. The adaptive algorithms to be considered are the Simplified Lattice Algorithm (SLA) proposed by Regalia and the Affine Combination Lattice Algorithm (ACLA) proposed by the authors. For these two algorithms, we derive the frequency estimation MSE in closed-form. The derivation is based on construction of a linear time-invariant model for generation of frequency estimation error, and division of this model into two submodels of which output signals are statistically uncorrelated to each other. This strategy leads to more accurate theoretical MSE expressions than the direct use of the existing analysis methods. Simulation results demonstrate that our theoretical MSE expressions are in very good agreement with the simulated MSE values.
机译:从理论上分析了归一化点阵结构的全通自适应陷波滤波算法在稳态频率估计上的均方误差(MSE)。要考虑的自适应算法是Regalia提出的简化格算法(SLA)和作者提出的仿射组合格算法(ACLA)。对于这两种算法,我们以封闭形式导出频率估计MSE。该推导基于用于产生频率估计误差的线性时不变模型的构建,并且将该模型划分为两个子模型,其输出信号在统计上彼此不相关。与直接使用现有分析方法相比,此策略可导致更准确的理论MSE表达式。仿真结果表明,我们的理论MSE表达式与仿真的MSE值非常吻合。

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