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To Code or Not to Code: Maximizing the Achievable Rate Region of Two-Way Decode-and-Forward Multiantenna Relay Channel

机译:编码或不编码:最大化双向解码和转发多天线中继信道的可实现速率区域

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摘要

Network coding (NC) can effectively improve the energy and spectral efficiency of two-way relay channels. In this letter, we consider the downlink of the decode-and-forward MISO bidirectional relay channels with a multiantenna relay and two single-antenna users, where channel vectors from the relay to two users are denoted by ${mmb h}_{1}$ and ${mmb h}_{2}$, respectively. Intuitively, NC can enjoy the maximum signal-to-noise ratio (SNR) gain, when ${mmb h}_{1}$ and ${mmb h}_{2}$ are linearly dependent. When ${mmb h}_{1}$ and ${mmb h}_{2}$ are orthogonal, however, NC suffers from the maximum SNR loss. In this case, zero-forcing beamforming (ZFBF) is naturally optimal in terms of the achievable rate region. As a result, we compare the achievable rate regions of NC and ZFBF. Based on the comparison, the optimal ZFBF-NC switching method is proposed.
机译:网络编码(NC)可以有效提高双向中继信道的能量和频谱效率。在这封信中,我们考虑了具有多天线中继和两个单天线用户的解码转发MISO双向中继信道的下行链路,其中从中继到两个用户的信道矢量用 $ {mmb h} _ {1} $ $ {mmb h}分别为_ {2} $ 。直观地讲,当 $ {mmb h} _ {1} $ 时,NC可以享受最大的信噪比(SNR)增益。 $ {mmb h} _ {2} $ 是线性相关的。当 $ {mmb h} _ {1} $ $ {mmb h} _ {2} $ 是正交的,但是NC遭受最大的SNR损失。在这种情况下,就可实现的速率区域而言,零强制波束成形(ZFBF)自然是最佳的。结果,我们比较了NC和ZFBF的可达到的速率区域。在比较的基础上,提出了最佳的ZFBF-NC切换方法。

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