NOMA增强型无小区大规模MIMO网络的高效上行功率控制

Meihui Hua, Wanli Ni, Hui Tian, Gaofeng Nie
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引用次数: 2

摘要

下一代网络日益增长的通信需求对现有蜂窝网络架构提出了巨大的挑战,并要求高效的资源分配。本文研究了一种无小区(CF)大规模多输入多输出(MIMO)网络,在该网络中,在没有小区边界的地理覆盖范围内,大量具有多个天线的分布式接入点同时为少量用户服务。为了缓解正交资源的限制,进一步提升网络容量,在信道训练阶段和上行传输阶段,将非正交多址接入技术应用于CF大规模MIMO网络。首先,考虑导频污染和信道统计导致的不完全信道状态信息(CSI),推导出上行传输速率的封闭表达式。其次,在得到上行速率表达式的基础上,通过优化功率控制方案,提出了能量效率最大化问题,并提出了一种低复杂度算法来解决非凸优化问题。最后,仿真结果验证了所设计的算法在不同CSI情况和网络设置下,与基准测试相比,可以显著提高EE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-Efficient Uplink Power Control in NOMA Enhanced Cell-Free Massive MIMO Networks
The ever-increasing communication requirement of the next generation network imposes great challenges in the existing cellular architecture and requires energy-efficient resource allocation. In this paper, we consider a cell-free (CF) massive multiple-input multiple-output (MIMO) network, where a large number of distributed access points with multiple antennas simultaneously serve a smaller number of users in a geographic coverage without cell boundary. To alleviate the limitation of orthogonal resource and further enhance network capacity, non-orthogonal multiple access is applied to the CF massive MIMO network in both channel training and uplink transmission phases. First, we derive the closed-form expression of uplink transmission rate by taking into account the imperfect channel state information (CSI) caused by pilot contamination and channel statistics. Second, based on the obtained uplink rate expression, an energy efficiency (EE) maximization problem is formulated by optimizing power control scheme, and we propose a low-complexity algorithm to address the non-convex optimization. Finally, simulation results validate that the designed algorithm can improve EE significantly compared to benchmarks in different CSI cases and network setups.
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