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首页> 外文期刊>IEEE Transactions on Signal Processing >Optimal DoF Region for the Asymmetric Two-Pair MIMO Two-Way Relay Channel
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Optimal DoF Region for the Asymmetric Two-Pair MIMO Two-Way Relay Channel

机译:非对称两对MIMO双向中继信道的最佳DoF区域

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摘要

In this paper, we study the optimal degrees of freedom (DoF) region for the two-pair MIMO two-way relay channel (TWRC) with asymmetric antenna setting, where two pairs of users exchange information with the help of a common relay. Each user i is equipped with Mi antennas, for i=1,2,3,4, and the relay is equipped with N antennas. First, we prove the converse of the DoF region by using the cut-set theorem and the genie-message approach. Then, we present new transmission schemes to achieve the optimal DoF region at different antenna configurations. Due to the asymmetric data exchange, where the two users in each pair can communicate a different number of data streams, we not only need to form the network-coded symbols but also need to process the additional asymmetric data streams at the relay. This is realized through the joint design of relay compression matrix and source precoding matrices. After obtaining the optimal DoF region, we study the optimal sum DoF by solving a linear programing problem. Our DoF analysis reveals that in the asymmetric antenna setting, some antennas at certain source nodes are redundant and cannot contribute to enlarge the DoF region. It is also found that there is no loss of optimality in terms of the sum DoF by enforcing symmetric data exchange within each user pair.
机译:在本文中,我们研究了具有非对称天线设置的两对MIMO两路中继信道(TWRC)的最佳自由度(DoF)区域,其中两对用户在一个公共中继的帮助下交换信息。每个用户i配备有Mi天线,其中i = 1、2、3、4,并且继电器配备了N根天线。首先,我们通过使用割集定理和精灵消息方法证明了自由度区域的逆。然后,我们提出了新的传输方案,以在不同的天线配置下实现最佳DoF区域。由于数据交换不对称,每对中的两个用户可以交流不同数量的数据流,因此我们不仅需要形成网络编码符号,还需要在中继上处理其他不对称数据流。这是通过中继压缩矩阵和源预编码矩阵的联合设计来实现的。在获得最佳自由度区域之后,我们通过解决线性规划问题来研究最佳总和自由度。我们的DoF分析表明,在非对称天线设置中,某些源节点处的某些天线是多余的,不会有助于扩大DoF区域。还发现通过在每个用户对内实施对称数据交换,在总和DoF方面没有损失最优性。

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