论文标题
强大的PCA用于以用户为中心的无单元无线网络中的子空间估算
Robust PCA for Subspace Estimation in User-Centric Cell-Free Wireless Networks
论文作者
论文摘要
我们考虑使用具有分布式远程无线电单元(RUS)的可扩展性以用户为中心的大型MIMO网络,从而使宏观多样性和关节处理。由于上行链路(UL)的飞行员维度有限,UL Pilot传输阶段中的多源干扰使通道估计成为一个非平凡的问题。我们分别利用两种类型的UL飞行员信号:sounding参考信号(SRS)和解调参考信号(DMRS)飞行员,分别估计通道子空间及其瞬时实现。 SRS飞行员根据基于拉丁正方形的跳跃方案在多个时段和资源块上传输,该方案旨在平均不同SRS Co-Pilot用户的干扰。我们提出了一种从SRS信号样本中的通道子空间估计的强大原理分析方法,该方法用于每个相关用户在RUS上使用。在RUS上进一步使用了估计的子空间,以进行DMR的飞行员净化和瞬时通道估计。我们提供数值模拟,以使用我们的子空间和通道估计方案与理想的部分子空间/通道知识和试验匹配通道估计的情况进行比较。结果表明,具有正确设计的SRS飞行员跳跃方案的系统可以紧密近似Genie Aided系统的性能。
We consider a scalable user-centric cell-free massive MIMO network with distributed remote radio units (RUs), enabling macrodiversity and joint processing. Due to the limited uplink (UL) pilot dimension, multiuser interference in the UL pilot transmission phase makes channel estimation a non-trivial problem. We make use of two types of UL pilot signals, sounding reference signal (SRS) and demodulation reference signal (DMRS) pilots, for the estimation of the channel subspace and its instantaneous realization, respectively. The SRS pilots are transmitted over multiple time slots and resource blocks according to a Latin squares based hopping scheme, which aims at averaging out the interference of different SRS co-pilot users. We propose a robust principle component analysis approach for channel subspace estimation from the SRS signal samples, employed at the RUs for each associated user. The estimated subspace is further used at the RUs for DMRS pilot decontamination and instantaneous channel estimation. We provide numerical simulations to compare the system performance using our subspace and channel estimation scheme with the cases of ideal partial subspace/channel knowledge and pilot matching channel estimation. The results show that a system with a properly designed SRS pilot hopping scheme can closely approximate the performance of a genie-aided system.