Subspace-based self-interference cancellation for full-duplex MIMO transceivers

This paper addresses the self-interference (SI) cancellation at baseband for full-duplex MIMO communication systems in consideration of practical transmitter imperfections. In particular, we develop a subspace-based algorithm to jointly estimate the SI and intended channels and the nonlinear distort...

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Published inEURASIP journal on wireless communications and networking Vol. 2017; no. 1; pp. 55 - 14
Main Authors Masmoudi, Ahmed, Le-Ngoc, Tho
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 23.03.2017
Springer Nature B.V
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ISSN1687-1499
1687-1472
1687-1499
DOI10.1186/s13638-017-0839-x

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Summary:This paper addresses the self-interference (SI) cancellation at baseband for full-duplex MIMO communication systems in consideration of practical transmitter imperfections. In particular, we develop a subspace-based algorithm to jointly estimate the SI and intended channels and the nonlinear distortions. By exploiting the covariance and pseudo-covariance of the received signal, we can increase the dimension of the received signal subspace while keeping the dimension of the signal subspace constant, and hence, the proposed algorithm can be applied to most of full-duplex MIMO configurations with arbitrary numbers of transmit and receive antennas. The channel coefficients are estimated, up to an ambiguity term, without any knowledge of the intended signal. A joint detection and ambiguity identification scheme is proposed. Simulation results show that the proposed algorithm can properly estimate the channel with only one pilot symbol and offers superior SI cancellation performance.
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ISSN:1687-1499
1687-1472
1687-1499
DOI:10.1186/s13638-017-0839-x