首页> 外文会议>Global Telecommunications Conference (GLOBECOM 2011), 2011 IEEE >A Coalition Formation Game for Energy-Efficient Cooperative Spectrum Sensing in Cognitive Radio Networks with Multiple Channels
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A Coalition Formation Game for Energy-Efficient Cooperative Spectrum Sensing in Cognitive Radio Networks with Multiple Channels

机译:多通道认知无线电网络中节能协作频谱感知的联盟形成博弈

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Spectrum sensing is one of the key technologies to realize spectrum reuse and increase the spectrum efficiency in cognitive radio networks (CRNs). In this paper, we study energy-efficient cooperative multi-channel spectrum sensing in CRNs. We first propose a cooperative spectrum sensing and accessing (CSSA) scheme for all the secondary users (SUs). The SUs cooperatively sense the licensed channels of the primary users (PUs) in the sensing slot. If a channel is determined to be idle, the SUs which have sensed that channel will have a chance to transmit packets in the data transmission slot. We then formulate this multi- channel spectrum sensing problem as a coalition formation game, where a coalition corresponds to the SUs that have chosen to sense and access a particular channel. The utility function of each coalition takes into account both the sensing accuracy and energy efficiency. We propose distributed algorithms to find the optimal partition that maximizes the aggregate utility of all the coalitions in the system. We prove analytically that the proposed algorithms terminate at a stable partition that achieves the optimal aggregate utility. Simulation results show that the proposed algorithms result in the self-organization of the SUs that achieves a higher aggregate utility after each iteration. Also, the convergence and optimality of the proposed algorithms are proved by simulation results.
机译:频谱感知是在认知无线电网络(CRN)中实现频谱重用和提高频谱效率的关键技术之一。在本文中,我们研究了CRN中的高能效协作多通道频谱感知。我们首先为所有辅助用户(SU)提出一种协作频谱感知和接入(CSSA)方案。 SU共同感测插槽中主要用户(PU)的许可通道。如果确定信道空闲,则已经感测到该信道的SU将有机会在数据传输时隙中传输分组。然后,我们将此多通道频谱感测问题表述为联盟形成博弈,其中联盟对应于已选择感测和访问特定通道的SU。每个联盟的效用函数都考虑了传感精度和能效。我们提出了分布式算法,以找到最佳分区,从而使系统中所有联盟的综合效用最大化。我们通过分析证明,提出的算法终止于实现最佳聚合效用的稳定分区。仿真结果表明,所提出的算法可导致SU的自组织,并且每次迭代后其效用更高。仿真结果证明了所提算法的收敛性和最优性。

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