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On a Cognitive Radio Network's Random Access Game With a Poisson Number of Secondary Users

机译:具有泊松数的二次用户的认知无线电网络的随机访问游戏

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摘要

In this letter a random access algorithm based on game theory for cognitive radio networks with random number of secondary users is investigated. The scenario examines a non-cooperative game in which all the players are unaware of the total number of devices participating (population uncertainty). We proposed a scheme where failed attempts to transmit (collisions) are penalized and, consequently, the optimum penalization in mixed strategies is calculated. Furthermore, an analytical approximation for the corresponding Pareto fronts which maximizes the throughput of individual secondary users is obtained. Finally, the impact that the presence of primary users have on the optimal access strategy is assessed.
机译:在这封信中,研究了基于随机数的认知无线电网络基于博弈论的随机访问算法。该场景研究了一个非合作游戏,其中所有玩家都不知道参与的设备总数(人口不确定性)。我们提出了一种方案,其中对失败的传输尝试(冲突)进行了惩罚,因此,计算了混合策略中的最佳惩罚。此外,获得了对相应的Pareto前沿的分析近似,该近似使单个次要用户的吞吐量最大化。最后,评估了主要用户的存在对最佳访问策略的影响。

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