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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Adaptive mechanism design and game theoretic analysis of auction-driven dynamic spectrum access in cognitive radio networks
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Adaptive mechanism design and game theoretic analysis of auction-driven dynamic spectrum access in cognitive radio networks

机译:认知无线电网络中拍卖驱动动态频谱接入的自适应机制设计和博弈论分析

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This paper studies the auction-driven dynamic spectrum access in cognitive radio networks with heterogeneous secondary users, who have different risk attitudes. First, a game theoretic framework is established for auction-driven dynamic spectrum access in cognitive radio networks. The utility functions and bidding strategies of heterogeneous secondary users are defined, and the parameterized auction mechanisms of primary user are also introduced. Then, we formulate the auction-driven dynamic spectrum access problem as a finite discrete game with a mixed- or pure-strategy Nash equilibrium solution. We study the existence and uniqueness properties of the pure-strategy Nash equilibrium in the defined game. Next, we propose a distributed learning automata algorithm (DLA) to attain the Nash equilibrium of the defined game with limited feedback. The adaptive mechanism design is realized in the updating procedure of our DLA algorithm. We further prove that our DLA algorithm converges to a Nash equilibrium of the defined game. Finally, simulation results show that our DLA algorithm is efficient and outperforms the dynamic spectrum access schemes with fixed auction mechanism.
机译:本文研究具有不同风险态度的具有异构二级用户的认知无线电网络中拍卖驱动的动态频谱访问。首先,建立了一个游戏理论框架,用于认知无线电网络中拍卖驱动的动态频谱访问。定义了异构二级用户的效用函数和出价策略,并介绍了一级用户的参数化拍卖机制。然后,我们将拍卖驱动的动态频谱访问问题公式化为带有混合策略或纯策略Nash均衡解决方案的有限离散博弈。我们研究了定义博弈中纯策略纳什均衡的存在性和唯一性。接下来,我们提出一种分布式学习自动机算法(DLA),以在有限反馈下实现已定义游戏的纳什均衡。在我们的DLA算法的更新过程中实现了自适应机制的设计。我们进一步证明,我们的DLA算法收敛于所定义博弈的Nash平衡。最后,仿真结果表明,我们的DLA算法是有效的,并且优于具有固定拍卖机制的动态频谱访问方案。

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