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A Signal-Space Aligned Network Coding Approach to Distributed MIMO

机译:分布式MIMO的信号空间对准网络编码方法

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摘要

This paper studies an uplink distributed MIMO (DMIMO) system that consists of K users and K' distributed base stations (BSs), where the BSs are connected to a central unit (CU) via independent rate-constrained backhaul (BH) links. We propose anew signal-space aligned network coding scheme. First, a network coding generator matrix is selected subject to certain structural properties. Next, distributed linear precoding is employed by the users to create aligned signal-spaces at the BSs, according to the pattern determined by the network coding generator matrix. For each aligned signal-space at a BS, physical-layer network coding is utilized to compute the corresponding network-coded (NC) messages, where the actual number of NC messages forwarded to the CU is determined by the BH rate-constraint. We derive an achievable rate of the proposed scheme based on the existence of the NC generator matrix and signal-space alignment precoding matrices. For DMIMO with two and three BSs, the achievable rates and degrees of freedom (DoF) are evaluated and shown to outperform existing schemes. For example, for DMIMO with two BSs where each user and BS have N and N' antennas, respectively, the proposed scheme achieves a DoF of 2 min (N, N') - 1, if the BH capacity scales like (2 min (N, N') - 1) log SNR. This leads to greater DoF compared to that utilizes the strategy for interference channel, whose DoF is min (N, N'). Numerical results demonstrate the performance advantage of the proposed scheme.
机译:本文研究了由K个用户和K'个分布式基站(BS)组成的上行链路分布式MIMO(DMIMO)系统,其中BS通过独立的速率受限回程(BH)链路连接到中央单元(CU)。我们提出了一种新的信号空间对齐网络编码方案。首先,选择具有特定结构特性的网络编码生成器矩阵。接下来,根据网络编码生成器矩阵确定的模式,用户采用分布式线性预编码在BS处创建对齐的信号空间。对于BS处的每个对准的信号空间,利用物理层网络编码来计算对应的网络编码(NC)消息,其中,转发给CU的NC消息的实际数量由BH速率约束确定。我们基于NC生成器矩阵和信号空间对齐预编码矩阵的存在,得出所提出方案的可实现速率。对于具有两个和三个BS的DMIMO,评估了可实现的速率和自由度(DoF),并显示其性能优于现有方案。例如,对于具有两个BS的DMIMO,其中每个用户和BS分别具有N和N'个天线,如果BH容量缩放为(2 min( N,N')-1)对数SNR。与利用其干扰因子为min(N,N')的干扰信道策略相比,这会导致更大的DoF。数值结果证明了该方案的性能优势。

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