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Novel sign subband adaptive filter algorithms with individual weighting factors

机译:具有独立加权因子的新型符号子带自适应滤波器算法

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This paper presents a new sign subband adaptive filter (SSAF) algorithm with an individual-weighting-factor (IWF) for each subband, instead of a common weighting factor in the original SSAF algorithm, called the IWF-SSAF. Each individual weighting factor only depends on the corresponding subband input signal power. Compared with the SSAF algorithm, the proposed approach fully utilizes the inherent decorrelating property of subband adaptive filter for colored inputs, leading to a better convergence performance. After that, to further enhance the performance of the IWF-SSAF in a sparse system, an improved proportionate IWF-SSAF (IWF-IPSSAF) algorithm is proposed. The proposed algorithms not only inherit the good robustness of sign algorithm against impulsive interferences, but also obtain a significant improvement in the performance as compared to their counterparts (i.e., SSAF and IPSSAF), in terms of the convergence rate and tracking capability. Besides, the IWF-IPSSAF algorithm has faster convergence rate than the IWF-SSAF algorithm for sparse impulse responses. Finally, the performances of two proposed algorithms are demonstrated in the system identification and the acoustic echo cancellation with double-talk.
机译:本文提出了一种新的符号子带自适应滤波器(SSAF)算法,该算法具有每个子带的单独加权因子(IWF),而不是原始SSAF算法中称为IWF-SSAF的公共加权因子。每个单独的加权因子仅取决于相应的子带输入信号功率。与SSAF算法相比,该方法充分利用了子带自适应滤波器的固有去相关特性,用于彩色输入,具有更好的收敛性能。之后,为进一步提高稀疏系统中IWF-SSAF的性能,提出了一种改进的比例IWF-SSAF(IWF-IPSSAF)算法。所提出的算法不仅继承了符号算法抗脉冲干扰的良好鲁棒性,而且在收敛速度和跟踪能力方面,与同等算法(即SSAF和IPSSAF)相比,其性能也得到了显着改善。此外,对于稀疏脉冲响应,IWF-IPSSAF算法具有比IWF-SSAF算法更快的收敛速度。最后,在系统识别和双向通话声回波消除中证明了两种算法的性能。

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