English

Generalized Signal Alignment For MIMO Two-Way X Relay Channels

Information Theory 2018-02-21 v1 math.IT

Abstract

We study the degrees of freedom (DoF) of MIMO two-way X relay channels. Previous work studied the case N<2MN < 2M, where NN and MM denote the number of antennas at the relay and each source, respectively, and showed that the maximum DoF of 2N2N is achievable when N8M5N \leq \lfloor\frac{8M}{5}\rfloor by applying signal alignment (SA) for network coding and interference cancelation. This work considers the case N>2MN>2M where the performance is limited by the number of antennas at each source node and conventional SA is not feasible. We propose a \textit{generalized signal alignment} (GSA) based transmission scheme. The key is to let the signals to be exchanged between every source node align in a transformed subspace, rather than the direct subspace, at the relay so as to form network-coded signals. This is realized by jointly designing the precoding matrices at all source nodes and the processing matrix at the relay. Moreover, the aligned subspaces are orthogonal to each other. By applying the GSA, we show that the DoF upper bound 4M4M is achievable when M2N5M \leq \lfloor\frac{2N}{5}\rfloor (MM is even) or M2N15M \leq \lfloor\frac{2N-1}{5}\rfloor (MM is odd). Numerical results also demonstrate that our proposed transmission scheme is feasible and effective.

Keywords

Cite

@article{arxiv.1402.1607,
  title  = {Generalized Signal Alignment For MIMO Two-Way X Relay Channels},
  author = {Kangqi Liu and Meixia Tao and Zhengzheng Xiang and Xin Long},
  journal= {arXiv preprint arXiv:1402.1607},
  year   = {2018}
}

Comments

6 pages, 6 figures, to appear in IEEE ICC 2014

R2 v1 2026-06-22T03:03:27.590Z