The recent extra-large scale massive multiple-input multiple-output (XL-MIMO) systems are seen as a promising technology for providing very high data rates in increased user-density scenarios. Spatial non-stationarities and visibility regions (VRs) appear across the XL-MIMO array since its large dimension is of the same order as the distances to the user-equipments (UEs). Due to the increased density of UEs in typical applications of XL-MIMO systems and the scarcity of pilots, the design of random access (RA) protocols and scheduling algorithms become challenging. In this paper, we propose a joint RA and scheduling protocol, namely non-overlapping VR XL- MIMO (NOVR-XL) RA protocol, which takes advantage of the different VRs of the UEs for improving RA performance, besides seeking UEs with non-overlapping VRs to be scheduled in the same payload data pilot resource. Our results reveal that the proposed scheme achieves significant gains in terms of sum rate compared with traditional RA schemes, as well as reducing access latency and improving connectivity performance as a whole.
翻译:最近超大规模的大规模多投入多产出(XL-MIMO)系统被视为在用户密度增加的情况下提供非常高数据率的有希望的技术,空间非静止性和可见度区域(VRs)出现在XL-MIMO阵列中,因为其大尺寸与用户设备距离(UES)的顺序相同。由于XL-MIMO系统典型应用中的Ues密度增加,而且缺乏试点,随机访问(RA)协议和排期算法的设计变得具有挑战性。在本文件中,我们提出一个联合RA和排期协议,即不重叠VR XL-MIMO(NOVR-XL)联合协议,它利用不同的VRs来改进RA性能,除了寻求将非重叠VRs的Ues安排在同一有效载荷数据试点资源中进行。我们的结果显示,拟议的计划在总和率方面与传统的RA计划相比,取得了显著的进展,同时减少了使用空间,提高了整个连接性。