论文标题
增强混合MMWAVE MIMO-NOMA系统的用户分组和功率分配
Enhanced User Grouping and Power Allocation for Hybrid mmWave MIMO-NOMA systems
论文作者
论文摘要
非正交多访问(NOMA)和毫米波(MMWave)是第五代移动网络及以后的两个关键促进技术。在本文中,我们考虑使用混合波束形成结构的上行链路通信,并专注于提高MMWAVE多输入多输出(MIMO) - NOMA系统的光谱效率(SE)和能源效率(EE),并具有增强的用户组分组和功率分配。利用MMWave通道的方向性特征,我们首先提出了一种新型初始聚集嵌套(AGNES)的用户分组算法,它通过利用通道相关性。注意到,由于涉及用户分组,梁选择和功率分配的相应问题的非线性编程性质,SE/EE的优化是一项具有挑战性的任务。我们的想法是将总体优化问题分解成一个混合整数问题,该问题仅包括用户分组和光束选择,然后是涉及功率分配和数字束缚设计的连续问题。为了避免蛮力搜索方法的高度高复杂性,我们提出了两种次优的低复杂性用户分组和束选择方案,直接AGNES(DIR-AGNES)方案和连续的Agnes(Suc-Agagnes)方案。我们还介绍了二次变换(QT),以将非凸功率分配优化问题重铸成一个凸面,并受每个用户的最低要求的数据率。连续问题通过迭代优化功率和数字波束形成来解决。广泛的仿真结果表明,我们提出的MMWave-Noma设计优于常规的正交多访问(OMA)场景和最新的NOMA方案。
Non-orthogonal multiple access (NOMA) and millimeter wave (mmWave) are two key enabling technologies for the fifth-generation (5G) mobile networks and beyond. In this paper, we consider uplink communications with a hybrid beamforming structure and focus on improving the spectral efficiency (SE) and energy efficiency (EE) of mmWave multiple-input multiple-output (MIMO)-NOMA systems with enhanced user grouping and power allocation. Exploiting the directionality feature of mmWave channels, we first propose a novel initial agglomerative nesting (AGNES) based user grouping algorithm by taking advantage of the channel correlations. It is noted that the optimization of the SE/EE is a challenging task due to the non-linear programming nature of the corresponding problem involving user grouping, beam selection, and power allocation. Our idea is to decompose the overall optimization problem into a mixed integer problem comprising of user grouping and beam selection only, followed by a continuous problem involving power allocation and digital beamforming design. To avoid the prohibitively high complexity of the brute-force search approach, we propose two suboptimal low-complexity user grouping and beam selection schemes, the direct AGNES (DIR-AGNES) scheme and the successive AGNES (SUC-AGNES) scheme. We also introduce the quadratic transform (QT) to recast the non-convex power allocation optimization problem into a convex one subject to a minimum required data rate of each user. The continuous problem is solved by iteratively optimizing the power and the digital beamforming. Extensive simulation results have shown that our proposed mmWave-NOMA design outperforms the conventional orthogonal multiple access (OMA) scenario and the state-of-art NOMA schemes.