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Joint power and timeslot allocation based on delay priority for multi-beam satellite downlinks

机译:基于延迟优先级的多波束卫星下行链路联合功率和时隙分配

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This paper investigates the joint power and timeslot allocation for multi-beam satellite downlinks. Users with real-time and non-real-time services under different channel conditions are considered to be satisfied with limited power and timeslots. To guarantee the fairness among different users, the delay priority is introduced for optimization, while the delay constrain is used to avoid delay deterioration of real-time users. Based on this, a joint power and timeslot allocation problem is formulated to maximize the weighted sum throughput. With convex optimization theory, the optimal power and timeslot allocation is derived, and a joint allocation algorithm based on subgradient method is proposed to determine the optimal solutions. Simulation results show that the proposed algorithm realize the trade-off between throughput and loss probability with delay fairness guarantee.
机译:本文研究了多波束卫星下行链路的联合功率和时隙分配。在不同的信道条件下具有实时和非实时服务的用户被认为对有限的功率和时隙感到满意。为了保证不同用户之间的公平性,引入了延迟优先级进行优化,同时采用了延迟约束来避免实时用户的延迟恶化。基于此,制定了联合功率和时隙分配问题,以最大化加权总和吞吐量。利用凸优化理论,推导了最优功率和时隙分配,并提出了基于次梯度法的联合分配算法来确定最优解。仿真结果表明,该算法在保证延迟公平性的前提下,实现了吞吐量与损失概率之间的权衡。

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