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Multichannel fast QRD-RLS adaptive filtering: Block-channel and sequential-channel algorithms based on updating backward prediction errors

机译:多通道快速QRD-RLS自适应滤波:基于更新后向预测误差的块通道和顺序通道算法

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摘要

Fast QR decomposition recursive least-squares (FQRD-RLS) algorithms are well known for their fast convergence and reduced computational complexity. A considerable research effort has been devoted to the investigation of single-channel versions of the FQRD-RLS algorithms, while the multichannel counterparts have not received the same attention. The goal of this paper is to broaden the study of the efficient and low complexity family of multichannel RLS adaptive filters, and to offer new algorithm options. We present a generalized approach for block-type multichannel FQRD-RLS (MC-FQRD-RLS) algorithms that includes both cases of equal and multiple order. We also introduce new versions for block-channel and sequential-channel processing, details of their derivations, and a comparison in terms of computational complexity. The proposed algorithms are based on the updating of backward a priori and a posteriori error vectors, which are known to be numerically robust.
机译:快速QR分解递归最小二乘(FQRD-RLS)算法以其快速收敛和降低的计算复杂度而闻名。对于FQRD-RLS算法的单通道版本,已经进行了大量研究工作,而多通道版本则没有得到同样的关注。本文的目的是拓宽对多通道RLS自适应滤波器的高效和低复杂度系列的研究,并提供新的算法选择。我们为块类型多通道FQRD-RLS(MC-FQRD-RLS)算法提供了一种通用方法,该方法包括等量和多量情况。我们还将介绍用于块通道和顺序通道处理的新版本,它们派生的详细信息以及在计算复杂度方面的比较。所提出的算法基于对后验先验和后验误差向量的更新,这在数值上是已知的。

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