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首页> 外文期刊>Frontiers of Information Technology & Electronic Engineering >Joint cooperative beamforming and artificial noise design for secure AF relay networks with energy-harvesting eavesdroppers
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Joint cooperative beamforming and artificial noise design for secure AF relay networks with energy-harvesting eavesdroppers

机译:带能量收集窃听器的安全AF中继网络的联合协作波束成形和人工噪声设计

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In this paper, we investigate physical layer security for simultaneous wireless information and power transfer in amplify-and-forward relay networks. We propose a joint robust cooperative beamforming and artificial noise scheme for secure communication and efficient wireless energy transfer. Specifically, by treating the energy receiver as a potential eavesdropper and assuming that only imperfect channel state information can be obtained, we formulate an optimization problem to maximize the worst-case secrecy rate between the source and the legitimate information receiver under both the power constraint at the relays and the wireless power harvest constraint at the energy receiver. Since such a problem is non-convex and hard to tackle, we propose a two-level optimization approach which involves a one-dimensional search and semidefinite relaxation. Simulation results show that the proposed robust scheme achieves better worst-case secrecy rate performance than other schemes.
机译:在本文中,我们研究了放大转发中继网络中同时进行无线信息和功率传输的物理层安全性。我们提出了一种联合鲁棒的协作波束成形和人工噪声方案,用于安全通信和有效的无线能量传输。具体来说,通过将能量接收器视为潜在的窃听者,并假设只能获得不完美的信道状态信息,我们制定了一个优化问题,以在功率约束为时,最大化源和合法信息接收器之间的最坏情况保密率。中继和能量接收器处的无线电力收集约束。由于这样的问题是非凸的且难以解决,因此我们提出了一种涉及一维搜索和半确定松弛的二级优化方法。仿真结果表明,所提出的鲁棒方案比其他方案具有更好的最坏情况保密率性能。

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