Abstract
In this paper, we analyse average secrecy rate in cooperative networks with decode-and-forward (DF) strategy. The multi-eavesdropper scenario is considered. The channels are modeled as independent and identically Rayleigh distributed coefficients. Exact closed-form expressions for average secrecy rate are derived. Our results are verified through comparison with Monte Carlo simulations.
Received: 2012-09-25
Published Online: 2013-04-11
Published in Print: 2013-04-13
©[2013] by Walter de Gruyter Berlin Boston
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Schlagwörter für diesen Artikel
physical-layer security;
cooperative networks;
decode-and-forward;
average secrecy rate
Artikel in diesem Heft
- Masthead
- Cross-polarization Suppression in Monolayer Reflectarray Antennas
- Analysis of Probes in a Rectangular Waveguide
- FDTD Analysis of Chiral Metamaterials Slab by using the Auxiliary Differential Equation Algorithm
- Design of Cathode Heater Assembly for High Power Gyrotron
- Cross-layer Design for MIMO Systems with Transmit Antenna Selection and Imperfect CSI
- Frequency-selective Fading Simulator for Real-time Laboratory Measurements
- Outage Capacity of Spectrum Sharing Cognitive Radio with Channel Estimation Errors and Feedback Delay in Rayleigh Fading Environments
- Average Secrecy Rate Analysis using Decode-and-Forward Strategy in Cooperative Networks
- Auction-based Security Game for Multiuser Cooperative Networks