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High-rate cooperative beamforming for physical-layer security in wireless cyber-physical systems

机译:无线网络物理系统中物理层安全性的高速合作波束形成

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The vast interconnectivity of devices in the Internet of Things (IoT) and Cyber-Physical systems under wireless environments facilitates information exchange, but challenges network security. In this paper, cooperative beamforming for secure communications is studied in wireless cyber-physical systems, where two legitimate devices communicate with the help of amplify-and-forward (AF) relays, and the eavesdropping devices around purpose to intercept the information. To achieve high secrecy sum rate, a secrecy sum rate maximization problem via cooperative beamforming with or without artificial noise is formulated under individual relay power constraint. The problem is shown to be non-convex. We then reformulate it into a difference of convex programming problem, relax it by a tight semidefinite relaxation (SDR), and approximate it into sequential convex problems by first-order Taylor expansion, which eventually leads to a high-rate beamforming solution. The simulations show that our developed beamforming scheme can achieve high secrecy sum rate and fast convergence.
机译:在无线环境下的物质互联网(物联网)和网络物理系统中的设备的广泛互连有助于信息交换,但是挑战网络安全。在本文中,在无线网络物理系统中研究了安全通信的协同波束成形,其中两个合法设备在放大和前进(AF)中继的帮助下通信,以及围绕目的播出的窃听设备拦截信息。为了实现高保密的总和率,在各个继电器功率约束下配制通过合作波束形成的保密和速率最大化问题。问题显示为非凸。然后,我们重新制定它变成凸规划问题的差异,通过严密的半定松弛(SDR)放松它,它近似成一阶泰勒展开一系列凸的问题,最终导致高速率波束形成解决方案。模拟表明,我们开发的波束形成方案可以实现高保密量和快速收敛。

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