论文标题

无细胞共生无线电通信的速率区域表征和通道估计

Rate-Region Characterization and Channel Estimation for Cell-Free Symbiotic Radio Communications

论文作者

Dai, Zhuoyin, Li, Ruoguang, Xu, Jingran, Zeng, Yong, Jin, Shi

论文摘要

最近提出了无细胞的大型MIMO和共生无线电通信,分别是超越第五代(B5G)网络结构和传输技术的有希望的人。为了获得两者的好处,本文研究了无单元的共生无线电通信系统,其中许多无单元的接入点(AP)合作将主要信息发送给接收器,并同时支持次级反向散射设备(BD)的被动反向散射通信。我们首先在理想的通道状态信息(CSI)的假设下得出了活跃的主要用户和被动次级用户的可实现的通信率,该假设优化了无细胞aps的发射光束构成,以表征无单元的共生通信系统的可实现速率区域。此外,为了实际获取主动和被动通道的CSI,我们提出了一种基于两相上行链路训练的有效通道估计方法,并且考虑到CSI估计误差的可实现速率区域。提供了仿真结果,以显示我们提出的波束形成和通道估计方法的有效性。

Cell-free massive MIMO and symbiotic radio communication have been recently proposed as the promising beyond fifth-generation (B5G) networking architecture and transmission technology, respectively. To reap the benefits of both, this paper studies cell-free symbiotic radio communication systems, where a number of cell-free access points (APs) cooperatively send primary information to a receiver, and simultaneously support the passive backscattering communication of the secondary backscatter device (BD). We first derive the achievable communication rates of the active primary user and passive secondary user under the assumption of perfect channel state information (CSI), based on which the transmit beamforming of the cellfree APs is optimized to characterize the achievable rate-region of cell-free symbiotic communication systems. Furthermore, to practically acquire the CSI of the active and passive channels, we propose an efficient channel estimation method based on two-phase uplink-training, and the achievable rate-region taking into account CSI estimation errors are further characterized. Simulation results are provided to show the effectiveness of our proposed beamforming and channel estimation methods.

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