We consider a two-way half-duplex decode-and-forward (DF) relaying system with multiple pairs of single-antenna users assisted by a cell-free (CF) massive multiple-input multiple-output (mMIMO) architecture with multiple-antenna access points (APs). Under the practical constraint of imperfect channel state information (CSI), we derive the achievable sum spectral efficiency (SE) for a finite number of APs with maximum ratio (MR) linear processing for both reception and transmission in closed-form. Notably, the proposed CF mMIMO relaying architecture, exploiting the spatial diversity, and providing better coverage, outperforms the conventional collocated mMIMO deployment. Moreover, we shed light on the power-scaling laws maintaining a specific SE as the number of APs grows. A thorough examination of the interplay between the transmit powers per pilot symbol and user/APs takes place, and useful conclusions are extracted. Finally, differently to the common approach for power control in CF mMIMO systems, we design a power allocation scheme maximizing the sum SE.
翻译:我们考虑的是双向半双向半解码和前向代(DF)中继系统,由多个单干网用户组成的双向双向双向双向双向中继系统,由无细胞(CF)大规模多投入多输出多输出结构(MIMO)协助,并配有多干网接入点(APs),在不完善的频道国家信息(CSI)的实际制约下,我们为有限数量的具有最高接收率和封闭式传输率(MR)线性处理的接收和传输得出了可实现的光谱效率(SE)。值得注意的是,拟议的CFMMIMO中继结构,利用空间多样性和提供更好的覆盖面,超过了传统的合用混合多输出多输出多输出(MIMO)结构。此外,随着APs数量的增长,我们阐明了维持具体SE的权力分级法律。我们彻底研究了每个试点符号传输力与用户/APs之间的相互作用,并得出了有用的结论。最后,不同于CFMMIMO系统权力控制共同方法,我们设计了权力分配计划,最大限度地增加SEE。