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Distributed Resource Allocation for Delay-Sensitive Services in Satellite Networks Using Game Theory

机译:卫星网络中延迟敏感服务的分布式资源分配的博弈论

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摘要

In this paper, a resource allocation and call admission control scheme based on game theory for satellite networks operating above 10 GHz is introduced, taking into account the propagation conditions and large propagation delay. The resource allocation scheme based on a bargaining model, which may be completed in a very short time, seems to be suitable for providing emergency services. A distributed call admission control algorithm exploiting the predictability of the satellite channel to guarantee quality of service (QoS) is also presented. According to the suggested scheme, each user unilaterally decides whether to accept a new call and, if all users unanimously agree, the new call is admitted. The performance of the proposed scheme is investigated using Markov chain modeling. Finally, analytical results concerning bounds for the call blocking probability and the system throughput are presented.
机译:本文考虑了传播条件和较大的传播时延,提出了一种基于博弈论的10 GHz以上卫星网络资源分配和呼叫接纳控制方案。基于讨价还价模型的资源分配方案似乎很适合提供紧急服务,该方案可能在很短的时间内完成。还提出了一种利用卫星信道的可预测性来保证服务质量(QoS)的分布式呼叫允许控制算法。根据建议的方案,每个用户单方面决定是否接受新呼叫,并且如果所有用户都一致同意,则接受新呼叫。使用马尔可夫链模型研究了该方案的性能。最后,给出了有关呼叫阻塞概率和系统吞吐量界限的分析结果。

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