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Arctangent based adaptive algorithm for a complex IIR notch filter for frequency estimation and tracking

机译:基于反正切的自适应IIR陷波滤波器的频率估计和跟踪自适应算法

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An arctangent (AT) based adaptive algorithm for a first-order complex adaptive IIR notch filter (CANF) is proposed in this paper. The objective of this work is to overcome some drawbacks including slow convergence speed and high sensitivity to impulsive noise of the previous gradient and nongradient based adaptive algorithms. The proposed AT algorithm employs the ratio of output to regressor signal as an error criterion where the arctangent value of such a ratio is employed to adjust the filter parameter. It is found that the proposed algorithm provides not only high speed convergence but also high impulsive noise robustness. Moreover, very low bias of the frequency estimate is also obtained. In addition, difference equation for the convergence in the mean and coarse stability bound in mean sense are derived. Computer simulations are conducted to show the performance of the proposed AT algorithm.
机译:提出了一种基于反正切(AT)的一阶复杂自适应IIR陷波滤波器(CANF)自适应算法。这项工作的目的是克服一些缺点,包括较慢的收敛速度和以前的基于梯度和基于非梯度的自适应算法对脉冲噪声的高灵敏度。所提出的AT算法采用输出与回归信号的比率作为误差标准,其中采用该比率的反正切值来调整滤波器参数。发现所提出的算法不仅提供了高速收敛,而且还提供了高的脉冲噪声鲁棒性。而且,还获得了频率估计的非常低的偏差。另外,推导了均值收敛的差分方程和均值意义上的粗稳定性边界。进行计算机仿真以显示所提出的AT算法的性能。

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