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Game theory based joint pricing and resource allocation for cognitive radio networks with imperfect channel information

机译:基于博弈论的信道信息不完全的认知无线电网络的联合定价和资源分配

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Cognitive radio technology is proposed to improve spectrum utilization efficiency through exploiting the unused portions of spectrum in an opportunistic manner. In cognitive radio networks (CRNs), primary users (PUs) are allowed to lease out their unused spectrum to share with cognitive users (CUs). In a CRN consisting of multiple PUs and CUs, the spectrum pricing and resource allocation scheme have to be optimally designed, so that the efficient spectrum sharing among PUs and CUs can be supported and the QoS requirements of both PUs and CUs can be guaranteed. In this paper, we consider the joint spectrum pricing and resource allocation problem of a CRN with imperfect channel condition, i.e., channel state information of the PUs is not fully accessible to the CUs. To characterize the willingness of PUs to share subchannels and the intention of CU on accessing subchannels, a pricing scheme for both PUs and CUs is designed. Addressing the competition of CUs in channel accessing and power allocation, a non-cooperative Game model is formulated. Through solving the Nash equilibrium solution of the Game model, the optimal pricing and resource allocation strategy can be obtained. Numerical results demonstrate the efficiency of the proposed algorithm.
机译:提出了认知无线电技术以通过机会主义的方式利用频谱的未使用部分来提高频谱利用效率。在认知无线电网络(CRN)中,允许主要用户(PU)出租未使用的频谱,以与认知用户(CU)共享。在由多个PU和CU组成的CRN中,必须优化设计频谱定价和资源分配方案,以便可以支持PU和CU之间的有效频谱共享,并可以确保PU和CU的QoS要求。在本文中,我们考虑了具有不完善信道条件的CRN的联合频谱定价和资源分配问题,即PU的信道状态信息不能完全被CU访问。为了表征PU共享子信道的意愿以及CU对访问子信道的意图,设计了用于PU和CU两者的定价方案。针对CU在信道接入和功率分配方面的竞争,建立了一种非合作博弈模型。通过求解博弈模型的纳什均衡解,可以获得最优的定价和资源分配策略。数值结果证明了该算法的有效性。

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