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作 者:Qiu Wenjing Liu Aijun Han Chen
机构地区:[1]College of Communication Engineering,Army Engineering University of PLA,Nanjing 210007,China [2]Sixty-Third Research Institute,National University of Defense Technology,Nanjing 21007,China
出 处:《China Communications》2024年第10期240-255,共16页中国通信(英文版)
基 金:supported by National Natural Science Foundation of China (No. 62201593, 62471480, and 62171466)。
摘 要:In this paper, we investigate a cooperation mechanism for satellite-terrestrial integrated networks. The terrestrial relays act as the supplement of traditional small cells and cooperatively provide seamless coverage for users in the densely populated areas.To deal with the dynamic satellite backhaul links and backhaul capacity caused by the satellite mobility, severe co-channel interference in both satellite backhaul links and user links introduced by spectrum sharing,and the difference demands of users as well as heterogeneous characteristics of terrestrial backhaul and satellite backhaul, we propose a joint user association and satellite selection scheme to maximize the total sum rate. The optimization problem is formulated via jointly considering the influence of dynamic backhaul links, individual requirements and targeted interference management strategies, which is decomposed into two subproblems: user association and satellite selection. The user association is formulated as a nonconvex optimization problem, and solved through a low-complexity heuristic scheme to find the most suitable access point serving each user. Then, the satellite selection is resolved based on the cooperation among terrestrial relays to maximize the total backhaul capacity with the minimum date rate constraints. Finally,simulation results show the effectiveness of the proposed scheme in terms of total sum rate and power efficiency of TRs' backhaul.
关 键 词:dynamic backhaul links interference management satellite selection satellite-terrestrial integrated networks user association
分 类 号:TN927.2[电子电信—通信与信息系统]
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