Physical-Layer Security of a Buffer-Aided Full-Duplex Relaying~System

December 18, 2016 Β· Declared Dead Β· πŸ› IEEE Communications Letters

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Authors Ahmed El Shafie, Ahmed Sultan, Naofal Al-Dhahir arXiv ID 1612.05881 Category cs.NI: Networking & Internet Cross-listed cs.IT Citations 48 Venue IEEE Communications Letters Last Checked 6 months ago
Abstract
This letter proposes a novel hybrid half-/full-duplex relaying scheme to enhance the relay channel security. A source node (Alice) communicates with her destination node (Bob) in the presence of a buffer-aided full-duplex relay node (Rooney) and a potential eavesdropper (Eve). Rooney adopts two different relaying strategies, namely randomize-and-forward and decode-and-forward relaying strategies, to improve the security of the legitimate system. In the first relaying strategy, Rooney uses a codebook different from that used at Alice. In the second relaying strategy, Rooney and Alice use the same codebooks. In addition, Rooney switches between half-duplex and full-duplex modes to further enhance the security of the legitimate system. The numerical results demonstrate that our proposed scheme achieves a significant average secrecy end-to-end throughput improvement relative to the conventional bufferless full-duplex relaying scheme.
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