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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Relay-Selection Refinement Scheme for Secrecy in Untrusted RF-EH Relay Systems With Adaptive Transmission Under Outdated CSI
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Relay-Selection Refinement Scheme for Secrecy in Untrusted RF-EH Relay Systems With Adaptive Transmission Under Outdated CSI

机译:在过时的CSI下具有自适应传输的不受信任的RF-EH继电器系统保密的中继选择细化方案

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In this paper, we investigate physical layer security of a dual-hop untrusted multiple amplify-and-forward energy-harvesting relaying network. Two main objectives are considered: saving the relays' energies and achieving a target secrecy rate. In the presence of direct links between the source and destination nodes, for the first design objective, we propose an adaptive switching scheme between the direct and the relaying modes where the direct link is prioritized. Thus, relay nodes are required only when the direct link fails to achieve the target secrecy rate requirement. For the second design objective, to save energy while forwarding the source information securely, a greedy battery-aware relay-selection scheme is proposed. Furthermore, to reduce the impact of outdated channel state information (CSI) on the system's secrecy performance, we propose a relay-selection refinement scheme consisting of repeating the relay-selection process prior to the information forwarding phase and we derive a closed-form upper bound of the secrecy outage probability. Our derived upper bound expression shows that our proposed scheme achieves better secrecy performance compared to the direct and conventional two-phase relay transmissions. We also show that, with the relay selection refinement scheme, a significant reduction in the negative impact of outdated CSI is achieved.
机译:在本文中,我们研究了双跳不受信任的多放大和前进能量收集中继网络的物理层安全性。考虑了两个主要目标:节省继电器的能量并实现目标保密率。在源和目的地节点之间的直接链路存在下,对于第一种设计目标,我们提出了直接和中继模式之间的自适应切换方案,其中直接链路优先考虑。因此,只有当直接链路无法实现目标保密率要求时,才需要继电器节点。对于第二种设计目标,为了安全地节省能源,提出了一种贪婪的电池感知继电器选择方案。此外,为了减少过时的信道状态信息(CSI)对系统的保密性能的影响,我们提出了一种中继选择的细化方案,包括在信息转发阶段之前重复中继选择过程,我们得出封闭式鞋面秘密中断概率的束缚。我们派生的上限表达表明,与直接和传统的两相继电器传输相比,我们所提出的方案实现了更好的保密性能。我们还表明,随着继电器选择细化方案,实现了过时的CSI的负面影响的显着降低。

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