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On Linear Precoding Strategies for Secrecy Rate Maximization in Multiuser Multiantenna Wireless Networks

机译:多用户多天线无线网络中保密率最大化的线性预编码策略研究

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Revived interest in physical layer security has led to a cascade of information theoretic results for various system topologies under different constraints. In the present paper, we provide practically oriented solutions to the problem of maximizing achievable secrecy rates in an environment consisting of multiple legitimate and eavesdropping radio nodes. By assuming “genie” aided perfect channel state information (CSI) feedback for both types of nodes, we first study two scenarios of interest. When independent messages are intended for all legitimate users (called “broadcast” mode), provably convergent second-order cone programming (SOCP)-based iterative procedure is used for designing secrecy rate maximizing beamformers. In the same manner, when a common message is intended only for legitimate nodes (dubbed “multicast” mode), SOCP-based design is proposed for obtaining linear precoders that maximize the achievable secrecy rate. Subsequently, we leverage the analysis to the more real-world scenario, where the CSI of the malicious nodes has to be somehow estimated and that of the legitimate users is corrupted with unavoidable errors. For this case, we devise provably convergent iterative semidefinite programming (SDP) procedures that maximize the achievable secrecy rates for both the beamforming-based broadcast and the linearly precoded multicast modes. Finally, numerical results are reported that evaluate the performance of the proposed solutions as a function of different system parameters. The results presented in the paper are demonstrated to outperform the ones based on interference alignment strategies. We also ascertain superior performance of the proposed schemes in the realms of real world.
机译:对物理层安全性的重新关注引起了各种系统拓扑在不同约束条件下的信息理论级联结果。在本文中,我们为在由多个合法且窃听的无线电节点组成的环境中最大化可达到的保密率问题提供了面向实际的解决方案。通过假设“精灵”辅助两种类型节点的完美信道状态信息(CSI)反馈,我们首先研究了两种感兴趣的方案。当将独立消息发送给所有合法用户时(称为“广播”模式),可使用基于可证明收敛的二阶锥编程(SOCP)的迭代过程来设计保密率最大化波束形成器。以相同的方式,当公共消息仅用于合法节点时(称为“多播”模式),建议使用基于SOCP的设计来获得线性预编码器,以使可达到的保密率最大化。随后,我们将分析用于更现实的情况,在这种情况下,必须以某种方式估计恶意节点的CSI,并且合法用户的CSI不可避免地会出错。对于这种情况,我们设计了可证明收敛的迭代半定编程(SDP)程序,该程序可使基于波束赋形的广播和线性预编码的多播模式的可实现的保密率最大化。最后,报告了数值结果,这些数值评估了所提出的解决方案作为不同系统参数的函数的性能。结果表明,本文提出的结果优于基于干扰对准策略的结果。我们还确定了所提出的方案在现实世界中的优越性能。

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