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Stochastic Geometry-based Comparison of Secrecy Enhancement Techniques in D2D Networks

Information Theory 2017-05-04 v2 math.IT

Abstract

This letter presents a performance comparison of two popular secrecy enhancement techniques in wireless networks: (i) creating guard zones by restricting transmissions of legitimate transmitters whenever any eavesdropper is detected in their vicinity, and (ii) adding artificial noise to the confidential messages to make it difficult for the eavesdroppers to decode them. Focusing on a noise-limited regime, we use tools from stochastic geometry to derive the secrecy outage probability at the eavesdroppers as well as the coverage probability at the legitimate users for both these techniques. Using these results, we derive a threshold on the density of the eavesdroppers below which no secrecy enhancing technique is required to ensure a target secrecy outage probability. For eavesdropper densities above this threshold, we concretely characterize the regimes in which each technique outperforms the other. Our results demonstrate that guard zone technique is better when the distances between the transmitters and their legitimate receivers are higher than a certain threshold.

Keywords

Cite

@article{arxiv.1701.00298,
  title  = {Stochastic Geometry-based Comparison of Secrecy Enhancement Techniques in D2D Networks},
  author = {Mustafa A. Kishk and Harpreet S. Dhillon},
  journal= {arXiv preprint arXiv:1701.00298},
  year   = {2017}
}

Comments

To appear in IEEE Wireless Communications Letters