城市空中移动网络的地面-卫星合作调度与功率分配

Hyung-Joo Moon;Chan-Byoung Chae
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引用次数: 0

摘要

在本文中,我们研究了在集成卫星和地面网络的6G非地面网络(NTN)框架中城市空中交通(UAM)的多用户下行链路调度和功率分配策略。我们考虑了一个涉及多个地面站(GSs)和单个卫星的系统模型,解决了链路关联、功率、仰角和最小服务质量约束下的总速率最大化问题。所提议的方法首先将卫星服务用户隔离,以减少剩余的全球导航系统服务用户之间的干扰,同时考虑到这些自动制导导弹的位置和移动。随后,利用图论方法,将GS链路关联问题转化为最小代价最大流量问题。在此过程中,我们采用多项式近似的解析方法或通过时间采样参数和的积分近似的数值方法。然后,我们通过迭代算法解决了调度链路的非凸功率分配问题。提出的调度和功率分配算法有效地管理了多uam和多gs环境下的干扰,并通过大量的仿真结果验证了其性能。我们的研究为未来UAM操作中有效的下行传输提供了一个全面的框架和策略,为6G NTN的新应用铺平了道路。
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Cooperative Ground-Satellite Scheduling and Power Allocation for Urban Air Mobility Networks
In this paper, we investigate a multi-user downlink scheduling and power allocation strategy for urban air mobility (UAM) within a 6G non-terrestrial network (NTN) framework that integrates satellite and ground networks. We consider a system model involving multiple ground stations (GSs) and a single satellite, addressing the sum rate maximization problem with link-association, power, elevation angle, and minimum quality-of-service constraints. The proposed method initially segregates satellite-serviced users to reduce interference among the remaining GS-serviced users, taking into account the locations and movements of those UAMs. Subsequently, using a graph-theoretical approach, we convert the GS link association problem into a minimum-cost maximum-flow problem. In this process, we employ an analytical method involving polynomial approximations or a numerical method using integral approximation through the sum of time-sampled parameters. We then address the non-convex power allocation problem for scheduled links through iterative algorithms. The proposed scheduling and power allocation algorithms effectively manage interference in multi-UAM and multi-GS environments, and their performance is validated through extensive simulation results. Our study provides a comprehensive framework and strategy for efficient downlink transmission in future UAM operations, paving the way for novel applications in 6G NTN.
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Table of Contents IEEE Communications Society Information Corrections to “Coverage Rate Analysis for Integrated Sensing and Communication Networks” IEEE Journal on Selected Areas in Communications Publication Information Guest Editorial: Integrated Ground-Air-Space Wireless Networks for 6G Mobile—Part II
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