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A Stackelberg Game for DSTC-Based Cognitive Radio Networks with Multiple Cooperative Relays

机译:基于DSTC的具有多个协作中继的认知无线电网络的Stackelberg游戏

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The spectrum utility can be improved when cooperative communication technology is incorporated into cognitive radio network, and both the licensed users and secondary users can benefit from cooperating. In this cooperative cognitive radio network, a primary user and multiple secondary users cooperate with each other adopting space-time coding relay scheme to benefit win-win cooperation. Considering the primary user owns the spectrum and both the primary user and secondary users are selfish and reasonable, this cooperative cognitive network is formulated as a Stackelberg game. Based on utility maximizing, this paper studies the spectrum allocation and relay selection problem. A spectrum allocation algorithm is derived under given number of secondary users, and a low complexity relay selection strategy is proposed to maximize the utility of the primary user while guaranteeing the data rate of the primary user and the fairness among the secondary users. Numerical results show the feasibility and validity of the proposed relay selection scheme.
机译:当将协作通信技术结合到认知无线电网络中时,频谱实用程序可以得到改善,并且许可用户和辅助用户都可以从协作中受益。在该协作认知无线电网络中,主要用户和多个次要用户采用时空编码中继方案进行协作,以实现双赢的合作。考虑到主要用户拥有频谱,主要用户和次要用户都是自私的和合理的,因此将这种协作认知网络表述为Stackelberg游戏。基于效用最大化,本文研究了频谱分配和中继选择问题。在给定数量的次要用户的基础上,推导了频谱分配算法,提出了一种低复杂度的中继选择策略,在保证主要用户的数据速率和次要用户公平的同时,最大化了主要用户的效用。数值结果表明了所提出的中继选择方案的可行性和有效性。

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