Liu Yang, Li Changqing, Li Jiong, Feng Lu
Graduate School, Space Engineering University, Beijing 101416, China.
Space Information School, Space Engineering University, Beijing 101416, China.
Sensors (Basel). 2022 Sep 10;22(18):6858. doi: 10.3390/s22186858.
In the satellite multigroup multicast communication systems based on the DVB-S2X standard, due to the limitation of the DVB-S2X frame structure, user scheduling and beamforming design have become the focus of academic research. In this work, we take the massive multi-input multi-output (MIMO) low earth orbit (LEO) satellite communication system adopting the DVB-S2X standard as the research scenario, and the LEO satellite adopts a uniform planar array (UPA) based on the fully connected hybrid structure. We focus on the coupling design of user scheduling and beamforming; meanwhile, the scheme design takes the influence of residual Doppler shift and phase disturbance on channel errors into account. Under the constraints of total transmission power and quality of service (QoS), we study the robust joint user scheduling and hybrid beamforming design aimed at maximizing the energy efficiency (EE). For this problem, we first adopt the hierarchical clustering algorithm to group users. Then, the semidefinite programming (SDP) algorithm and the concave convex process (CCCP) framework are applied to tackle the optimization of user scheduling and hybrid beamforming design. To handle the rank-one matrix constraint, the penalty iteration algorithm is proposed. To balance the performance and complexity of the algorithm, the user preselected step is added before joint design. Finally, to obtain the digital beamforming matrix and the analog beamforming matrix in a hybrid beamformer, the alternative optimization algorithm based on the majorization-minimization framework (MM-AltOpt) is proposed. Numerical simulation results show that the EE of the proposed joint user scheduling and beamforming design algorithm is higher than that of the traditional decoupling design algorithms.
在基于DVB-S2X标准的卫星多组多播通信系统中,由于DVB-S2X帧结构的限制,用户调度和波束成形设计已成为学术研究的重点。在这项工作中,我们将采用DVB-S2X标准的大规模多输入多输出(MIMO)低地球轨道(LEO)卫星通信系统作为研究场景,且LEO卫星采用基于全连接混合结构的均匀平面阵列(UPA)。我们专注于用户调度和波束成形的耦合设计;同时,方案设计考虑了残余多普勒频移和相位干扰对信道误差的影响。在总发射功率和服务质量(QoS)的约束下,我们研究旨在最大化能量效率(EE)的鲁棒联合用户调度和混合波束成形设计。针对这个问题,我们首先采用分层聚类算法对用户进行分组。然后,应用半定规划(SDP)算法和凹凸过程(CCCP)框架来处理用户调度和混合波束成形设计的优化。为处理秩一矩阵约束,提出了惩罚迭代算法。为平衡算法的性能和复杂度,在联合设计之前增加用户预选步骤。最后,为在混合波束形成器中获得数字波束成形矩阵和模拟波束成形矩阵,提出了基于最大化 - 最小化框架的交替优化算法(MM - AltOpt)。数值仿真结果表明,所提出的联合用户调度和波束成形设计算法的能量效率高于传统的解耦设计算法。