This paper proposes a novel approach to improve the performance of a heterogeneous network (HetNet) supported by dual connectivity (DC) by adopting multiple unmanned aerial vehicles (UAVs) as passive relays that carry reconfigurable intelligent surfaces (RISs). More specifically, RISs are deployed under the UAVs termed as UAVs-RISs that operate over the micro-wave ($\mu$W) channel in the sky to sustain a strong line-of-sight (LoS) connection with the ground users. The macro-cell operates over the $\mu$W channel based on orthogonal multiple access (OMA), while small base stations (SBSs) operate over the millimeter-wave (mmW) channel based on non-orthogonal multiple access (NOMA). We study the problem of total transmit power minimization by jointly optimizing the trajectory/velocity of each UAV, RISs' phase shifts, subcarrier allocations, and active beamformers at each BS. The underlying problem is highly non-convex and the global optimal solution is intractable. To handle it, we decompose the original problem into two subproblems, i.e., a subproblem which deals with the UAVs' trajectories/velocities, RISs' phase shifts, and subcarrier allocations for $\mu$W; and a subproblem for active beamforming design and subcarrier allocation for mmW. In particular, we solve the first subproblem via the dueling deep Q-Network (DQN) learning approach by developing a distributed algorithm which leads to a better policy evaluation. Then, we solve the active beamforming design and subcarrier allocation for the mmW via the successive convex approximation (SCA) method. Simulation results exhibit the effectiveness of the proposed resource allocation scheme compared to other baseline schemes. In particular, it is revealed that by deploying UAVs-RISs, the transmit power can be reduced by 6 dBm while maintaining similar guaranteed QoS.
翻译:本文提出一种新颖的方法来改善由双连接(DC)支持的多功能网络(HetNet)的性能。 宏观电池在以多功能访问(OMA)为基础的$mUW 频道上运行, 而小型基站(SBS)则在以不垂直多功能访问(NOMA)为基础的毫米(mmW)频道上运行。 更具体地说,RIS是在被称为UAV-RIS的UAV-RIS频道下部署的,在微波($\mu$W)频道上运行,以维持与地面用户的强烈直线(LOS)连接。 宏观电池在以多功能访问(OMA)为基础的美元MUMUW频道上运行,而小型基站(SBS)则是以被动多功能多功能访问(OMA)连接,而小型基站(SBRVR) 配置基于非垂直多功能设计(mm)频道的配置(mmissional MI) 配置,我们通过直径(V) QFIL) 的配置,我们将原始设计(ILIL) 配置的次配置的次配置, 配置的次配置在亚系统上进行亚变变变变的配置, 数据(OFIFIL) 的配置,我们的配置的配置的亚的配置是用来进行亚变的系统。