Providing minimum quality-of-service (QoS) in crowded wireless communications systems, with high user density, is challenging due to the network structure with limited transmit power budget and resource blocks. Smart resource allocation methods, such as user scheduling, power allocation, and modulation and coding scheme selection, must be implemented to cope with the challenge. Aiming to enhance the number of served users with minimum QoS in the downlink (DL) channel of crowded extra-large scale massive multiple-input multiple-output (XL-MIMO) systems, in this paper we propose a QoS-aware joint user scheduling and power allocation technique. The proposed technique is constituted by two sequential procedures: the clique search-based scheduling (CBS) algorithm for user scheduling followed by optimal power allocation with transmit power budget and minimum achievable rate per user constraints. To accurately evaluate the proposed technique in the XL-MIMO scenario, we propose a generalized non-stationary multi-state channel model based on spherical-wave propagation assuming that users under LoS and NLoS transmission coexist in the same communication cell. Such model considers that users under different channel states experience different propagation aspects both in the multipath fading model and the path loss rule. Numerical results on the achievable sum-rate, number of scheduled users, and distribution of the scheduled users reveal that the proposed CBS algorithm provides a fair coverage over the whole cell area, achieving remarkable numbers of scheduled users when users under the LoS and NLoS channel states coexist in the communication cell.
翻译:在用户密度高的拥挤无线通信系统中,提供最起码的服务质量(Qos),由于网络结构的网络结构,传输电力预算和资源区块有限,因此具有挑战性。必须采用智能资源分配方法,如用户时间安排、电力分配、调制和编码办法选择等,以应对挑战。为了在拥挤超大型超大型多投入多输出(XL-MIMO)系统下行链(DL)中增加拥有最低质量的用户数量,我们在此文件中提议采用一个通用的非固定多输出多输出(XL-MIMO)多输出(XL-MIMO)系统,假设LOS用户和NLOS传输的用户联合用户时间安排和电力分配技术。拟议技术由两个顺序程序组成:用户时间安排的分类搜索安排(CBS)算法,随后以最佳的权力分配法和最低可实现的每个用户限制率。为了准确评价XLL-MIMO情景中的拟议技术,我们提议基于球波传播的通用非固定多状态多输出频道模式模式模型,假设同一通信单元的用户和NLOS传输的用户同时同时使用。这种拟议技术。这种技术由两个顺序程序程序构成两个顺序程序,这种方法的用户在不同的渠道分配路径的用户在可实现可实现可实现的轨道分配的轨道的轨道分布的用户在可实现的轨道的轨道的轨道的路径上的用户和可达标路路路段路段的用户在路段的路径上的结果。