The mobile data traffic has been exponentially growing during the last decades, which has been enabled by the densification of the network infrastructure in terms of increased cell density (i.e., ultra-dense network (UDN)) and/or increased number of active antennas per access point (AP) (i.e., massive multiple-input multiple-output (mMIMO)). However, neither UDN nor mMIMO will meet the increasing data rate demands of the sixth generation (6G) wireless communications due to the inter-cell interference and large quality-of-service variations, respectively. Cell-free (CF) mMIMO, which combines the best aspects of UDN and mMIMO, is viewed as a key solution to this issue. In such systems, each user equipment (UE) is served by a preferred set of surrounding APs cooperatively. In this paper, we provide a survey of the state-of-the-art literature on CF mMIMO. As a starting point, the significance and the basic properties of CF mMIMO are highlighted. We then present the canonical framework, where the essential details (i.e., transmission procedure and mathematical system model) are discussed. Next, we provide a deep look at the resource allocation and signal processing problems related to CF mMIMO and survey the up-to-date schemes and algorithms. After that, we discuss the practical issues when implementing CF mMIMO. Potential future directions are then pointed out. Finally, we conclude this paper with a summary of the key lessons learned in this field. This paper aims to provide a starting point for anyone who wants to conduct research on CF mMIMO for future wireless networks.
翻译:在过去几十年里,移动数据流量一直呈指数式增长,这得益于网络基础设施的密度增加,因为每个接入点的细胞密度(即超重网络)和/或活天线数量增加(即超重网络)和/或每个接入点(AP)(即大量多投入多产出)(IMIMO)的活跃天线数量增加。然而,无论是UDN还是MIMO都无法满足第六代(6G)无线通信中不断增长的数据率需求,这分别是由于细胞间干扰和高服务质量变化造成的。无细胞(CF)MIMIMO,它结合了UDN和MIMO的最佳方向,被视为解决这一问题的一个关键解决办法。在这种系统中,每个用户设备都得到一套更可取的AP(即大规模多投入多产出(IMIMO)的多种产出(mIMIMO)的合作。然而,我们提供CFMIMIMIMIMO的最新文献调查,作为起点,其重要性和基本性质特性,然后我们用CFMIMIMO的模型, 来分析我们将来的模型和标志性数据传输过程。