Cooperative user-scheduling and resource allocation optimization for intelligent reflecting surface enhanced LEO satellite communication

Meng Meng, Bo Hu, Shanzhi Chen, Jianyin Zhang
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Abstract

Lower Earth Orbit (LEO) satellite becomes an important part of complementing terrestrial communication due to its lower orbital altitude and smaller propagation delay than Geostationary satellite. However, the LEO satellite communication system cannot meet the requirements of users when the satellite-terrestrial link is blocked by obstacles. To solve this problem, we introduce Intelligent reflect surface (IRS) for improving the achievable rate of terrestrial users in LEO satellite communication. We investigated joint IRS scheduling, user scheduling, power and bandwidth allocation (JIRPB) optimization algorithm for improving LEO satellite system throughput. The optimization problem of joint user scheduling and resource allocation is formulated as a non-convex optimization problem. To cope with this problem, the nonconvex optimization problem is divided into resource allocation optimization sub-problem and scheduling optimization sub-problem firstly. Second, we optimize the resource allocation sub-problem via alternating direction multiplier method (ADMM) and scheduling sub-problem via Lagrangian dual method repeatedly. Third, we prove that the proposed resource allocation algorithm based ADMM approaches sublinear convergence theoretically. Finally, we demonstrate that the proposed JIRPB optimization algorithm improves the LEO satellite communication system throughput.
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智能反射面增强型低地轨道卫星通信的合作用户调度和资源分配优化
与地球静止卫星相比,低地轨道(LEO)卫星轨道高度较低,传播延迟较小,因此成为地面通信的重要补充。然而,当星地链路受到障碍物阻挡时,低地轨道卫星通信系统无法满足用户的要求。为解决这一问题,我们引入了智能反射面(IRS),以提高低地轨道卫星通信中地面用户的可实现速率。我们研究了联合 IRS 调度、用户调度、功率和带宽分配(JIRPB)优化算法,以提高低地轨道卫星系统的吞吐量。用户联合调度和资源分配的优化问题被表述为一个非凸优化问题。针对这一问题,首先将非凸优化问题分为资源分配优化子问题和调度优化子问题。其次,我们通过交替方向乘法(ADMM)对资源分配子问题进行优化,并通过拉格朗日对偶法对调度子问题进行反复优化。第三,我们证明了所提出的基于 ADMM 的资源分配算法在理论上接近亚线性收敛。最后,我们证明了所提出的 JIRPB 优化算法提高了低地轨道卫星通信系统的吞吐量。
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