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RFI cancellation in VDSL systems using a novel complex allpass-based IIR adaptive notch filter

机译:在VDSL系统中使用新型复杂的基于全通的IIR自适应陷波滤波器消除RFI

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A complex-allpass-based multiple notch IIR filter is proposed to suppress Radio Frequency Interference (RFI) that affect VDSL systems. A notch filter realization based on complex allpass cascaded second-order sections is presented and evaluated in this paper. Two different algorithms, using the Recursive Prediction Error (RPE) method and an alternative (similar to the Steiglitz-McBride) method, are proposed to update the adaptive notch filter coefficients. Simple stochastic gradient algorithms can be obtained using allpass cascaded second-order sections whose regressors are formed by orthogonal functions which is not the case for the conventional complex cascade realization. Comparisons with other multiple-notch realizations evaluating convergence rate and residual interference levels are included. The novel structure using the RPE method reaches the lowest residual interference level with the fastest convergence rate. Furthermore using the novel techniques stability check is not needed, which reduces their implementation complexity.
机译:为了抑制影响VDSL系统的射频干扰(RFI),提出了一种基于复杂全通的多陷波IIR滤波器。提出并评估了基于复杂全通级联二阶截面的陷波滤波器实现。提出了两种使用递归预测误差(RPE)方法和替代方法(类似于Steiglitz-McBride)的算法来更新自适应陷波滤波器系数。可以使用全通级联的二阶截面来获得简单的随机梯度算法,该二阶截面的回归函数是由正交函数形成的,而常规的复杂级联实现则不是这种情况。包括与评估收敛速率和残余干扰水平的其他多级切口实现的比较。使用RPE方法的新颖结构以最低的收敛速度达到了最低的残留干扰水平。此外,不需要使用新颖的技术来进行稳定性检查,从而降低了其实现的复杂性。

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