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A game theory approach for power control and relay selection in cooperative communication networks with asymmetric information

机译:具有不对称信息的协作通信网络中功率控制和中继选择的博弈论方法

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The performance of cooperative communication depends on elaborative resource allocation, such as power control and relay selection. Traditional centralized transmission control requires precise information of the whole networks. In this paper, we introduce a new cooperative mechanism where relay nodes take the initiative. In the system model information like channel state, energy cost and power constraints are all user's private information. Thus, the game involved is under asymmetric information. We derive the Perfect Bayesian Equilibrium (PBE) via distributed computing and achieve optimal benefits for the mobile virtual network operators (MVNO) and relay nodes. The proposed approach not only helps the relay nodes with power control but also helps the operators with relay selection.We prove the game to achieve unique equilibrium in different scenarios. Moreover, numerical results and analysis show that both relay nodes and the source node benefit from the proposed game compared with none-cooperative game.
机译:协作通信的性能取决于复杂的资源分配,例如功率控制和中继选择。传统的集中式传输控制需要整个网络的精确信息。在本文中,我们介绍了一种新的协作机制,其中中继节点是主动的。在系统模型中,诸如信道状态,能源成本和功率约束之类的信息都是用户的私人信息。因此,所涉及的游戏处于非对称信息之下。我们通过分布式计算得出完美贝叶斯平衡(PBE),并为移动虚拟网络运营商(MVNO)和中继节点实现最佳收益。所提出的方法不仅可以帮助中继节点进行功率控制,还可以帮助运营商进行中继选择。此外,数值结果和分析表明,与非合作博弈相比,中继节点和源节点都受益于所提出的博弈。

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