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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II >Fast multidelay block transform-domain adaptive filters based on a two-dimensional optimum block algorithm
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Fast multidelay block transform-domain adaptive filters based on a two-dimensional optimum block algorithm

机译:基于二维最优块算法的快速多延迟块变换域自适应滤波器

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摘要

Three fast and flexible block transform-domain gradient adaptive digital filters (ADF's) for finite impulse response (FIR) adaptive filtering are presented. The proposed ADF's employ a two-dimensional optimum block algorithm (OBA) in order to obtain a time-varying convergence factor which is optimized in a least square (LS) sense for fast and accurate adaptation, and to allow one to choose an appropriate transform size for smaller block delay and more efficient use of a hardware. In the first one of the proposed ADF's, the multidelay frequency-domain OBA (MFOBA), the two-dimensional OBA is realized with the conventional fast Fourier transform (FFT). In the second one, the normalized MFOBA (NMFOBA), a robust normalization method significantly improves its convergence speed for colored input signals. In the third one, the Fermat number transform (FNT) based realization (MFOBA/FNT), the desirable properties of the FNT (e.g., no roundoff errors, no multiplication and no complex basis functions) are utilized to yield an ideal structure for an efficient hardware implementation. By computer simulation, it is shown that these ADF's are faster than other transform-domain adaptive algorithms.
机译:提出了三种快速,灵活的块变换域梯度自适应数字滤波器(ADF),用于有限脉冲响应(FIR)自适应滤波。拟议的ADF采用二维最佳块算法(OBA),以获得时变收敛因子,该因子在最小二乘(LS)意义上进行了优化,以实现快速准确的适应,并允许人们选择合适的变换尺寸较小的块延迟和更有效地使用硬件。在所提出的ADF的第一个中,即多延迟频域OBA(MFOBA),二维OBA是通过传统的快速傅立叶变换(FFT)实现的。在第二种方法中,归一化的MFOBA(NMFOBA)是一种鲁棒的归一化方法,可以显着提高其对彩色输入信号的收敛速度。在第三篇文章中,利用基于费马数变换(FNT)的实现(MFOBA / FNT),该FNT的理想属性(例如,无舍入误差,无乘法和无复数基函数)可用于生成理想的结构。高效的硬件实施。通过计算机仿真,表明这些ADF比其他变换域自适应算法要快。

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