论文标题

试验辅助分布式多组多播的多播预编码设计,用于无细胞大型MIMO

Pilot-Aided Distributed Multi-Group Multicast Precoding Design for Cell-Free Massive MIMO

论文作者

Gouda, Bikshapathi, Atzeni, Italo, Tölli, Antti

论文摘要

我们建议使用适度的训练开销的完全分布的多组播放预编码设计,用于无细胞的大型多输入多输出(MIMO)系统。我们针对多播组的最大平均平方误差(MSE)的总和的最小化,然后用加权总和MSE最小化近似,以简化计算和信号传导。为了以完全分布的方式设计基础站(BSS)的联合网络多组多播预制器和用户设备(UES)的组合者,我们采用了迭代性的双向培训方案,具有UE特异性或组特异性的预编码预编码的上链路上链路上链路链路链接前置飞行员和特定于组的预编码预编码的下行下行式下行的飞行员。为此,我们引入了一种新的小组特定上行链路培训资源,该资源完全消除了对渠道状态信息(CSI)交换的回程信号的需求。通过最佳响应或基于梯度的更新,在每个BS上在本地优化了预编码器,并通过完美的CSI分析了两种方法的收敛性。最后,数值结果表明,所提出的分布方法极大地超过了仅依赖局部CSI的常规无细胞大型MIMO预编码设计。

We propose fully distributed multi-group multicast precoding designs for cell-free massive multiple-input multiple-output (MIMO) systems with modest training overhead. We target the minimization of the sum of the maximum mean squared errors (MSEs) over the multicast groups, which is then approximated with a weighted sum MSE minimization to simplify the computation and signaling. To design the joint network-wide multi-group multicast precoders at the base stations (BSs) and the combiners at the user equipments (UEs) in a fully distributed fashion, we adopt an iterative bi-directional training scheme with UE-specific or group-specific precoded uplink pilots and group-specific precoded downlink pilots. To this end, we introduce a new group-specific uplink training resource that entirely eliminates the need for backhaul signaling for the channel state information (CSI) exchange. The precoders are optimized locally at each BS by means of either best-response or gradient-based updates, and the convergence of the two approaches is analyzed with respect to the centralized implementation with perfect CSI. Finally, numerical results show that the proposed distributed methods greatly outperform conventional cell-free massive MIMO precoding designs that rely solely on local CSI.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源