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Convex analysis based beamforming of decode-and-forward cooperation for improving wireless physical layer security

机译:基于凸分析的解码和转发协作波束形成以提高无线物理层安全性

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Physical-layer-based security aims at ensuring the reliability of communication and preventing eavesdropping by taking advantage of the physical layer's characteristics rather than the data encryption in upper layer. Cooperation is a way to achieve this goal with many benefits for wireless communication. In particular, the cooperation scheme called decode-and-forward (DF) is discussed in this paper and our objective is to design each cooperating node's beamforming factor for maximum achievable secrecy rate. Considering that individual power constraint is more reasonable than total power constraint and to set noise power levels at the destination and the eavesdropper different is more practical than the same, we get the whole optimization problem which is unconvex. With the help of perfect global channel state information (CSI), the problem is solved through a way where convex optimization and one-dimensional search are combined together. And strict proofs are presented for this method. Numerical results of the obtained maximum achievable secrecy rate show that the proposed design can significantly improve the security performance of wireless systems compared to directly transmission.
机译:基于物理层的安全性旨在通过利用物理层的特性而不是上层的数据加密来确保通信的可靠性并防止窃听。合作是实现此目标的一种方式,对无线通信有很多好处。特别是,本文讨论了一种称为解码转发(DF)的协作方案,我们的目标是设计每个协作节点的波束形成因子,以实现最大的保密率。考虑到单独的功率约束比总的功率约束更合理,并且在目的地设置噪声功率水平,而与窃听者不同的设置要比相同的更为实用,因此我们得到了整个优化问题,这是不凸的。借助于完美的全局信道状态信息(CSI),可以通过将凸优化和一维搜索结合在一起的方式来解决该问题。并为该方法提供了严格的证明。所获得的最大可达到的保密率的数值结果表明,与直接传输相比,该设计可以显着提高无线系统的安全性能。

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