认知无线电网络中动态频谱共享的博弈论方法

K. Trisna, I. Mustika, Widyawan, S. Sulistyo
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引用次数: 5

摘要

在频谱共享系统中,只要不影响高优先级用户的通信,低优先级用户可以在空间上重用分配给高优先级用户的频谱。因此,为了提高频谱利用率,对前者用户的一个重要要求就是对干扰进行管理,保证后者用户能够保持可靠的通信。提出了一种基于博弈论的认知无线电网络动态频谱共享模型。首先,定义了一个效用函数,该函数捕获了低优先级用户的自私和合作行为,通过选择具有最小系统内和系统间干扰的最佳信道来管理干扰。其次,基于已定义的效用函数,可以将所提出的框架表述为潜在的博弈;因此,只要采用最优响应动态,就能保证收敛到纳什平衡点。在均衡点处,提出了将对高优先级用户的干扰维持在最大允许水平以下的功率分配算法。仿真结果表明,所提出的潜在博弈具有收敛性,高优先级用户在信噪比和中断概率方面的性能有所提高。
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A game-theoretic approach for dynamic spectrum sharing in cognitive radio networks
In a spectrum sharing system, lower-priority users are allowed to spatially reuse the spectrum allocated to higher-priority users as long as they do not disrupt communications of the latter. Therefore, to improve spectrum utilization, an important requirement for the former users is to manage the interference and ensure that the latter users can maintain reliable communications. This paper presents a game theoretic framework to model the dynamic spectrum sharing in cognitive radio networks. First, a utility function that captures the selfish and cooperative behavior of the lower-priority users to manage the interference by selecting the best channel with minimal intra- and inter-system interference is defined. Next, based on the defined utility function, the proposed framework can be formulated as a potential game; thus, the convergence to a Nash equilibrium point is ensured as long as the best response dynamic is adopted. At the equilibrium point, power allocation algorithm is proposed such that the interference to higher-priority users can be maintained below the maximum allowable level. The simulation results show the convergence of the proposed potential game and the performance improvement of higher-priority users in terms of SINR and outage probability.
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