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Dynamic Spectrum Access Algorithm Based on Game Theory in Cognitive Radio Networks

机译:认知无线电网络中基于博弈论的动态频谱接入算法

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As an enabling technology for dynamic spectrum access (DSA), cognitive radio (CR) is widely regarded as one of the most promising technologies for future the fifth generation (5G) wireless communications. Although there have been significant prior researches to combat interference on primary users (PUs), the problem of mitigating mutual interference between secondary users (SUs), -which is tightly coupled with SU's spectrum leasing- is still not understood well. This paper proposes a DSA algorithm based on game theory, which jointly performs spectrum leasing and interference mitigation among SUs. The problem is modeled as an oligopolistic competition using Stackelberg model. We have carefully studied the SU's spectrum utilization behavior with respect to various criteria of the proposed game theoretic model. Simulation results shows that, Compared with Cournot game model, the proposed scheme enables SUs to efficiently utilize the licensed spectrum shared with PUs in a dynamic environment while maximizing the spectrum utilization.
机译:作为动态频谱访问(DSA)的使能技术,认知无线电(CR)被广泛认为是未来第五代(5G)无线通信的最有希望的技术之一。尽管已经进行了重要的研究来消除对主要用户(PU)的干扰,但是缓解与次要用户(SU)之间相互干扰的问题-与SU的频谱租赁紧密相关-仍然不是很了解。本文提出了一种基于博弈论的DSA算法,该算法可以共同实现SU之间的频谱租赁和干扰缓解。使用Stackelberg模型将问题建模为寡头竞争。我们已经针对所提出的博弈论模型的各种标准仔细研究了SU的频谱利用行为。仿真结果表明,与Cournot博弈模型相比,该方案使SU能够在动态环境中有效利用与PU共享的许可频谱,同时最大化频谱利用率。

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