Multichannel blind deconvolution of complex I/Q independent sources with phase recovery

Fang-lin Gu, Hang Zhang, Yi Xiao
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引用次数: 1

Abstract

Multichannel blind deconvolution (MBD) techniques allow recovery of individual source signals from observed mixtures, exploiting only the assumption of mutual independence of sources. Generally, complex signals are recovered with an arbitrary phase rotation. In this paper, we propose two constrained MBD algorithms to separate complex sources and remove the phase ambiguities simultaneously when the sources have independent in-phase and quadrature (I/Q) components. The algorithms apply the MBD techniques to real-valued signals, which are composed by the real and imaginary parts of the complex-valued sources, and impose constraint on the structure of separating filter to avoid the so-called I/Q associated problem. Simulation results demonstrate that the proposed algorithms are effective in recovering source phases without affecting source separation.
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具有相位恢复的复I/Q独立源的多通道盲反卷积
多通道盲反卷积(MBD)技术允许从观测到的混合信号中恢复单个源信号,仅利用源相互独立的假设。一般来说,用任意相位旋转恢复复信号。在本文中,我们提出了两种约束MBD算法来分离复杂源并同时去除具有独立的同相分量和正交分量(I/Q)的相位模糊。该算法将MBD技术应用于由复值源的实部和虚部组成的实值信号,并对分离滤波器的结构施加约束,以避免所谓的I/Q关联问题。仿真结果表明,该算法能够在不影响源分离的情况下有效地恢复源相位。
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