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      MIMO Multiway Relaying with Pairwise Data Exchange: A Degrees of Freedom Perspective

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          Abstract

          In this paper, we study achievable degrees of freedom (DoF) of a multiple-input multiple-output (MIMO) multiway relay channel (mRC) where \(K\) users, each equipped with \(M\) antennas, exchange messages in a pairwise manner via a common \(N\)-antenna relay node. % A novel and systematic way of joint beamforming design at the users and at the relay is proposed to align signals for efficient implementation of physical-layer network coding (PNC). It is shown that, when the user number \(K=3\), the proposed beamforming design can achieve the DoF capacity of the considered mRC for any \((M,N)\) setups. % For the scenarios with \(K>3\), we show that the proposed signaling scheme can be improved by disabling a portion of relay antennas so as to align signals more efficiently. Our analysis reveals that the obtained achievable DoF is always piecewise linear, and is bounded either by the number of user antennas \(M\) or by the number of relay antennas \(N\). Further, we show that the DoF capacity can be achieved for \(\frac{M}{N} \in \left(0,\frac{K-1}{K(K-2)} \right]\) and \(\frac{M}{N} \in \left[\frac{1}{K(K-1)}+\frac{1}{2},\infty \right)\), which provides a broader range of the DoF capacity than the existing results. Asymptotic DoF as \(K\rightarrow \infty\) is also derived based on the proposed signaling scheme.

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          Most cited references14

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          Interference Alignment and Degrees of Freedom of the $K$-User Interference Channel

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            Capacity of the Gaussian Two-Way Relay Channel to Within ${1\over 2}$ Bit

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              Degrees of Freedom of the MIMO Y Channel: Signal Space Alignment for Network Coding

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                Author and article information

                Journal
                2014-01-28
                2014-08-27
                Article
                10.1109/TSP.2014.2347924
                1401.7229
                2013122c-5e1d-4e8e-83ad-7d9ff8710120

                http://creativecommons.org/licenses/by/3.0/

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                Custom metadata
                13 pages, 7 figures
                cs.IT math.IT

                Numerical methods,Information systems & theory
                Numerical methods, Information systems & theory

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