Cell-Free Symbiotic Radio: Channel Estimation Method and Achievable Rate Analysis

Zhuoyin Dai, Ruoguang Li, Jingran Xu, Yong Zeng, Shi Jin
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引用次数: 10

Abstract

Cell-free massive MIMO and symbiotic radio are promising beyond 5G(B5G) networking architecture and transmission technology, respectively. This paper studies cell-free symbiotic radio systems, where a number of distributed access points (APs) cooperatively send primary information to a receiver, and simultaneously support the backscattering communication of the secondary backscatter device (BD). An efficient two-phase uplink-training based channel estimation method is proposed to estimate the direct-link channel and cascaded backscatter channel, and the achievable primary and secondary communication rates taking into account the channel estimation errors are derived. Furthermore, to achieve a flexible trade-off between the primary and secondary communication rates, we propose a low-complexity weighted-maximal-ratio transmission (weighted-MRT) beamforming scheme, which only requires local processing at each AP without having to exchange the estimated channel state information. Simulation results are provided to show the impact of the channel training lengths on the performance of the cell-free symbiotic radio systems.
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无细胞共生无线电:信道估计方法和可达速率分析
无蜂窝大规模MIMO和共生无线电分别是超越5G(B5G)网络架构和传输技术的前景。本文研究了无蜂窝共生无线电系统,其中多个分布式接入点(ap)协同向接收机发送主信息,同时支持二次后向散射设备(BD)的后向散射通信。提出了一种有效的基于两相上行链路训练的信道估计方法,用于估计直连信道和级联后向散射信道,并推导了考虑信道估计误差的可实现主、次通信速率。此外,为了实现主从通信速率之间的灵活权衡,我们提出了一种低复杂度加权最大比传输(加权mrt)波束形成方案,该方案只需要在每个AP进行本地处理,而无需交换估计的信道状态信息。仿真结果显示了信道训练长度对无小区共生无线电系统性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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