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Optimal Admission Control For Secondary Users In Cognitive Radio Systems

机译:认知无线电系统中二级用户的最佳准入控制

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The optimal admission strategy for secondary users (SUs) in a cognitive radio (CR) system with two types of primary users (PUs) is investigated in this paper. When an SU comes to the system, it will decide to either enter the system or give up its service and leave the system based on the current state (number of PUs and SUs) of the system. SUs can access the spectrum in an opportunistic way without interfering with the PUs. When any PU arrives, however, if the band is occupied by a SU, the SU's service on the band is interrupted and this SU is placed back to the waiting queue. Admitting each SU would bring a reward to the system provider but holding each US in the system would also incur some expenses (or cost) to the provider. We concentrate on the optimization problems of when to admit or reject a SU when all bandwidth are being used in order to achieve the maximum total discounted expected reward for any initial state. By developing a continuous time Markov decision process model, we verify that the optimal policy for admitting SUs is a state-related control limit policy. Our numerical results explained in both tables and diagrams are consistent with our theoretic results.
机译:本文研究了具有两种主要用户(PU)的认知无线电(CR)系统中次要用户(SU)的最佳接纳策略。当SU进入系统时,它将根据系统的当前状态(PU和SU的数量)决定进入系统还是放弃其服务并离开系统。 SU可以以机会主义的方式访问频谱,而不会干扰PU。然而,当任何PU到达时,如果该频带被SU占用,则该频带上的SU的服务被中断,并且该SU被放回到等待队列中。接纳每个SU会给系统提供者带来奖励,但是将每个美国都保留在系统中也会给提供者带来一些费用(或成本)。我们专注于在使用所有带宽时何时接受或拒绝SU的优化问题,以实现任何初始状态的最大总折价预期奖励。通过开发连续时间马尔可夫决策过程模型,我们验证了接纳SU的最佳策略是与状态相关的控制极限策略。在表格和图表中解释的数值结果与我们的理论结果是一致的。

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