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Frequency-domain Adaptive Filtering: from Real to Hypercomplex Signal Processing

机译:频域自适应滤波:从实信号到超复杂信号处理

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摘要

Frequency-domain adaptive filters (FDAFs) have been widely used over the years, but they are still matter of research due to their powerful capabilities that differentiate them from the whole family of time-domain adaptive filters. This paper aims at providing an overview on FDAFs through a unifying framework that can be used for the derivation of the most popular algorithms of the FDAF family and enables the processing of a wide variety of signals, from real-valued ones to complex- and hypercomplex-valued signals. In particular, we focus on a recent class of FDAFs in the quaternion domain and we show how to derive it from the described framework. Moreover, we evaluate the application of the derived quaternion FDAF to the processing of 3D audio signals. Experimental results show the effectiveness of the proposed adaptive filter in estimating the inverse of a multidimensional acoustic impulse response.
机译:频域自适应滤波器(FDAF)在多年上被广泛使用,但由于他们的强大功能,它们仍然是研究的重要性,这些能力将它们与整个时域自适应过滤器区分开来。本文旨在通过统一框架在FDAF上提供概述,该框架可用于FDAF系列最受欢迎的算法,并能够从真实值的框架从真实值的信号处理到复杂和超自要的信号 - 标识信号。特别是,我们专注于四元域中最近的FDAF,我们展示了如何从所述框架中派生它。此外,我们评估得出的四元数FDAF在3D音频信号的处理中的应用。实验结果表明,所提出的自适应滤波器估算多维声学脉冲响应的倒数的有效性。

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