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Improve physical layer security in cooperative wireless network using distributed auction games

机译:使用分布式拍卖游戏提高协作无线网络中的物理层安全性

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In this paper, we investigate a cooperative wireless network with jamming-based secure communications, where a friendly jammer can transmit jamming signals to interfere the malicious eavesdropper. We find that the secrecy rate of the source-destination link can be effectively improved with the help of the friendly jammer, and each source intends to obtain optimal jamming power from the friendly jammer to maximize its secrecy rate for data transmission. We then formulate this power allocation problem as an auction game and propose two distributively auction-based power allocation schemes, which are power allocation using Traditional Ascending Clock Auction (ACA-T) and power allocation using Alternative Ascending Clock Auction (ACA-A), considering the friendly jammer as the auctioneer and the sources as the bidders. In addition, we prove that both the proposed schemes can converge in a finite number of iterations. We also prove that the ACA-A scheme is cheat-proof while the ACA-T scheme is not. Finally, simulation results are presented to demonstrate the efficiency of the proposed auction-based schemes in improving secrecy rate of wireless networks.
机译:在本文中,我们研究了一种基于干扰的安全通信的协作无线网络,其中友好的干扰器可以传输干扰信号来干扰恶意窃听者。我们发现,在友好干扰器的帮助下,可以有效地提高源-目的链路的保密率,并且每个源都打算从友好干扰器中获得最佳干扰能力,以最大程度地提高数据传输的保密率。然后,我们将此电源分配问题公式化为拍卖游戏,并提出了两种基于拍卖的配电方案,分别是使用传统上升时钟拍卖(ACA-T)的功率分配和使用替代上升时钟拍卖(ACA-A)的功率分配,将友善的干扰者视为拍卖人,将消息来源视为竞标者。另外,我们证明了这两种提议的方案都可以在有限数量的迭代中收敛。我们还证明了ACA-A方案是防作弊的,而ACA-T方案则不是。最后,仿真结果被证明来证明所提出的基于拍卖的方案在提高无线网络的保密率方面的效率。

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