This paper proposes, and evaluates the benefit of, one particular hybrid satellite-HAPS-ground network, where one high-altitude-platform-station (HAPS) connected to one geo-satellite assists the ground base-stations (BSs) at serving ground-level users. The paper assumes that the geo-satellite is connected to the HAPS using free-space-optical backhaul link. The HAPS, equipped with multiple antennas, aims at transmitting the geo-satellite data to the users via radio-frequency (RF) links using spatial-multiplexing. Each ground BS, on the other hand, is equipped with multiple antennas and serves users through RF links. The paper then focuses on maximizing the network-wide throughput, subject to user-connectivity constraints, HAPS and BSs power constraints, and backhaul constraints, so as to jointly determine the user-association strategy of each user (i.e., user to geo-satellite via HAPS, or user to BS), and their associated beamforming vectors. We tackle such a mixed discrete-continuous optimization problem using an iterative approach, where the user-association is determined using a combination of linear integer programming and generalized assignment problems, and where the beamforming strategy is found using a weighted-minimum-mean-squared-error approach. The simulations illustrate the appreciable gain of our proposed algorithm, and highlight the prospects of augmenting the ground networks with beamforming-empowered HAPS for connecting the unconnected, and super-connecting the connected.
翻译:本文提出并评价一个特定的混合卫星-HAPS地面网络的好处,其中与一个地球卫星连接的一个高高度平台(HAPS)协助地面基地站为地面用户服务。本文假定地球卫星与HAPS连接,使用自由空间光学反向通道连接。HAPS配备了多天线,目的是利用空间-多式混合连接,通过无线电-频率(RF)链接将地球卫星数据传送给用户。每个地面BS都配有多个天线,并通过RF链接为用户服务。本文随后侧重于尽量扩大整个网络的地面基地站(BS),但须视用户的连接性限制、HAPS和BS的功率限制和后向限制而定。HAPS配备了多个天线,目的是通过无线电-频率(RF)链接将地球卫星数据传送给用户,使用空间-频谱(RF)链接。每个地面BS(即用户通过HAPS,或BS的用户)及其相关成型矢量矢量矢量。我们用这种混合的离-直径-直径-直径-直径网络网络连接连接网络连接网络网络网络,使用一个平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平平。