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Secrecy Rate Optimizations for a MIMO Secrecy Channel With a Cooperative Jammer

机译:具有合作干扰器的MIMO保密信道的保密率优化

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In this paper, we study different secrecy rate optimization techniques for a multiple-input–multiple-output (MIMO) secrecy channel, where a multiantenna cooperative jammer is employed to improve secret communication in the presence of a multiantenna eavesdropper. Specifically, we consider two optimization problems, namely, power minimization and secrecy rate maximization. These problems are not jointly convex in terms of the transmit covariance matrices of the legitimate transmitter and the cooperative jammer. To circumvent these nonconvexity issues, we alternatively design the transmit covariance matrix of the legitimate transmitter and the cooperative jammer. For a given transmit covariance matrix at the cooperative jammer, we solve the power minimization and secrecy rate maximization problems based on a Taylor series expansion. Then, we propose two iterative algorithms to solve these approximated problems. In addition, we develop a robust scheme by incorporating channel uncertainties associated with the eavesdropper. By exploiting , we show that these robust optimization problems can be formulated into semidefinite programming. Moreover, we consider the secrecy rate maximization problem based on game theory, where the jammer introduces charges for its jamming service based on the amount of the interference caused to the eavesdropper. This secrecy rate maximization problem is formulated into a game where the jammer and the transmitter are the leader and the follower of the game, respectively. For the proposed game, equilibrium is analytically derived. Simulation results have been provided to validate the convergence and performance of the proposed algorithms. In addition, it is shown that the proposed robust scheme outperforms the nonrobust scheme in terms of the achieved secrecy rate and the worst-case secrecy rate. Finally, the
机译:在本文中,我们研究了针对多输入多输出(MIMO)保密信道的不同保密速率优化技术,其中多天线协作式干扰器用于改善存在多天线窃听器的情况下的秘密通信。具体来说,我们考虑两个优化问题,即功耗最小化和保密率最大化。就合法发射机和协作干扰器的发射机协方差矩阵而言,这些问题不是共同凸出的。为了避免这些非凸性问题,我们可以选择设计合法发射机和协作干扰器的发射机协方差矩阵。对于协作干扰机上的给定发射协方差矩阵,我们基于泰勒级数展开来解决功率最小化和保密率最大化的问题。然后,我们提出了两种迭代算法来解决这些近似问题。此外,我们通过合并与窃听者相关的信道不确定性,开发了一个健壮的方案。通过利用,我们表明可以将这些鲁棒的优化问题表达为半定规划。此外,我们考虑基于博弈论的保密率最大化问题,其中干扰器根据对窃听者造成的干扰量为其干扰服务引入费用。该保密率最大化问题被公式化为游戏,其中干扰者和发送者分别是游戏的领导者和跟随者。对于所提出的博弈,通过分析得出平衡。提供了仿真结果,以验证所提出算法的收敛性和性能。另外,表明,在实现的保密率和最坏情况下的保密率方面,所提出的鲁棒方案优于非鲁棒方案。最后,

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