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Bayesian Coalitional Game in Physical Layer Security

机译:物理层安全性中的贝叶斯联盟博弈

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摘要

Cooperative communication has been recently investigated as an attractive way to improve the physical layer security of wireless network. However, in practical situation, the node's behavior in the coalition is either cooperative or not due to the environment the mobile node located. Wireless network nodes do not have an exact and perfect knowledge of the cooperative behavior of the potential cooperators in coalition formation. In order to form the stable coalitional structure under behavior uncertainty of nodes, we propose the Bayesian Coalitional Games using partition model based on possible worlds (i.e. environments), which nodes enter into contracts (i.e. agreements) with one another to deal with the uncertain payoffs. We obtain the Bayesian core which is the Nash-stable and fair coalitional structure. A belief update mechanism to the nodes with cooperative behavior uncertainty is used to calculate the probability of each possible world. We also present a discrete-time Markov chain model to investigate the stability of the coalitional structure. Preliminary experimental evidence demonstrates the effectiveness of our approach.
机译:最近已经研究了协作通信,作为提高无线网络物理层安全性的一种有吸引力的方法。但是,在实际情况下,由于移动节点所处的环境,该节点在联盟中的行为是合作的还是不合作的。无线网络节点对联盟形成中潜在合作者的合作行为没有确切和完善的知识。为了在节点行为不确定的情况下形成稳定的联盟结构,我们提出了一种基于可能世界(即环境)的分区模型的贝叶斯联盟博弈,即节点之间相互签订合同(即协议)以应对不确定的收益。 。我们获得了贝叶斯核心,即纳什稳定和公平的联盟结构。具有协作行为不确定性的节点的信念更新机制用于计算每个可能世界的概率。我们还提出了一个离散时间马尔可夫链模型来研究联盟结构的稳定性。初步的实验证据证明了我们方法的有效性。

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