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An Indirect-Reciprocity Reputation Game for Cooperation in Dynamic Spectrum Access Networks

机译:动态频谱接入网合作的间接对等信誉博弈

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摘要

Cooperation is a promising approach to simultaneously achieve efficient utilization of spectrum resource and improve the quality of service of primary users in dynamic spectrum access networks. However, due to the selfish nature, secondary users may not act as cooperatively as primary users have expected. Therefore, how to stimulate the secondary users to play cooperatively is an important issue. In this paper, we propose a reputation-based spectrum access framework, where the cooperation stimulation problem is modeled as an indirect reciprocity game. In the proposed game, secondary users choose how to help primary users relay information and gain reputations, based on which they can access a certain amount of vacant licensed channels in the future. By formulating a secondary user's decision making as a Markov decision process, we obtain the optimal action rule, according to which the secondary user will use maximal power to help primary user relay data if the channel is not in an outage, and thus greatly improve the primary user's quality of service as well as the spectrum utilization efficiency. Moreover, we prove the uniqueness of stationary reputation distribution and theoretically derive the condition under which the optimal action rule is evolutionarily stable. Finally, simulation results are shown to verify the effectiveness of the proposed scheme.
机译:合作是一种有前途的方法,可以同时实现频谱资源的有效利用并提高动态频谱接入网络中主要用户的服务质量。但是,由于自私的性质,次要用户可能无法像主要用户所期望的那样协作。因此,如何激发二级用户合作玩耍是一个重要的问题。在本文中,我们提出了一种基于信誉的频谱访问框架,其中将合作激励问题建模为间接互惠博弈。在建议的游戏中,次要用户选择如何帮助主要用户中继信息并获得声誉,从而使他们将来可以访问一定数量的闲置许可渠道。通过将次要用户的决策制定为马尔可夫决策过程,我们获得了最佳操作规则,根据该最优操作规则,如果信道没有中断,则次要用户将使用最大功率来帮助主要用户中继数据,从而极大地改善了主要用户的服务质量以及频谱利用效率。此外,我们证明了固定信誉分布的唯一性,并从理论上推导了最佳行动规则在进化上稳定的条件。最后,仿真结果表明了所提方案的有效性。

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