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Distributed Optimal Random Access Scheme for Energy Harvesting Devices in Satellite Communication Networks

机译:卫星通信网络中能量收集设备的分布式最优随机接入方案

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摘要

This paper considers satellite communication networks where each satellite terminal is equipped with energy harvesting (EH) devices to supply energy continuously, and randomly transmits bursty packets to a geostationary satellite over a shared wireless channel. Packet replicas combined with a successive iteration cancellation scheme can reduce the negative impact of packet collisions but consume more energy. Hence, appropriate energy management policies are required to mitigate the adverse effect of energy outages. Although centralized access schemes can provide better performance on the networks’ throughput, they expend extra signallings to allocate the resources, which leads to non-negligible communication latencies, especially for the satellite communication networks. In order to reduce the communication overhead and delay, a distributed random access (RA) scheme considering the energy constraints is studied. Each EH satellite terminal (EH-ST) decides whether to transmit the packet and how many replicas are transmitted according to its local energy and EH rates to maximize the average long-term network throughput. Owing to the nonconvexity of this problem, we adopted a game theoretic method to approximate the optimal solution. By forcing all the EH-STs to employ the same policy, we characterized and proved the existence and uniqueness of the symmetric Nash equilibrium (NE) of the game. Moreover, an efficient algorithm is proposed to calculate the symmetric NE by combining a policy iteration algorithm and the bisection method. The performance of the proposed RA scheme was investigated via numerous simulations. Simulation results showed that the proposed RA scheme is applicable to the EH devices in the future low-cost interactive satellite communication system.
机译:本文考虑了卫星通信网络,其中每个卫星终端都配备了能量收集(EH)设备以连续提供能量,并通过共享的无线信道将突发数据包随机发送到对地静止卫星。数据包副本与连续的迭代取消方案相结合可以减少数据包冲突的负面影响,但会消耗更多能量。因此,需要适当的能源管理政策来减轻能源中断的不利影响。尽管集中式访问方案可以在网络吞吐量上提供更好的性能,但是它们会花费额外的信令来分配资源,这导致了不可忽略的通信等待时间,尤其是对于卫星通信网络而言。为了减少通信开销和延迟,研究了考虑能量约束的分布式随机接入(RA)方案。每个EH卫星终端(EH-ST)都会根据其本地能量和EH速率来决定是否发送数据包以及发送多少副本,以最大化平均长期网络吞吐量。由于该问题的非凸性,我们采用了博弈论的方法来逼近最优解。通过强迫所有EH-ST采取相同的策略,我们表征并证明了博弈对称纳什均衡(NE)的存在和唯一性。此外,提出了一种有效的算法,将策略迭代算法和二分法相结合来计算对称NE。通过大量仿真研究了所提出的RA方案的性能。仿真结果表明,所提出的随机接入方案适用于未来的低成本交互式卫星通信系统中的EH设备。

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