论文标题
团队对无细胞的大型MIMO网络进行预编码
Team Precoding Towards Scalable Cell-free Massive MIMO Networks
论文作者
论文摘要
在最近的一项工作中,我们研究了一种新颖的预编码设计,用于无细胞网络,称为团队最小均时误差(TMMSE)预编码,该网络基于发射器特异性通道状态(CSI),严格将集中的MMSE MMSE预编码概括为分布式操作。尽管它在CSI共享水平上处理不同的合作制度方面具有灵活性,但TMMSE预编码却假定了范围内的数据轴承信号共享,因此本质上是不可扩展的。在这项工作中,受到基于以用户为中心的网络聚类技术的最新不扩展架构的进展的启发,我们通过提出了涵盖部分消息共享的TMMSE预编码设计的新颖版本来解决此问题。然后,成功地应用所获得的框架以推导各种新颖,最佳和有效的预编码方案,用于使用多个无线电条纹部署的无用户中心网络。典型工业互联网情景的数值模拟证实了TMMSE预编码在不同功率约束下的光谱效率方面对竞争方案的收益。尽管在下行链路预编码的背景下提出,但本文的结果也可以应用于上行链路上。
In a recent work, we studied a novel precoding design for cell-free networks called team minimum mean-square error (TMMSE) precoding, which rigorously generalizes centralized MMSE precoding to distributed operations based on transmitter-specific channel state information (CSI). Despite its flexibility in handling different cooperation regimes at the CSI sharing level, TMMSE precoding assumes network-wide sharing of the data bearing signals, and hence it is inherently not scalable. In this work, inspired by recent advances on scalable cell-free architectures based on user-centric network clustering techniques, we address this issue by proposing a novel version of the TMMSE precoding design covering partial message sharing. The obtained framework is then successfully applied to derive a variety of novel, optimal, and efficient precoding schemes for a user-centric cell-free network deployed using multiple radio stripes. Numerical simulations of a typical industrial internet-of-things scenario corroborate the gains of TMMSE precoding over competing schemes in terms of spectral efficiency under different power constraints. Although presented in the context of downlink precoding, the results of this paper may be applied also on the uplink.