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Enhancing the Physical Layer Security of Non-Orthogonal Multiple Access in Large-Scale Networks

IEEE Transactions on Wireless Communications · 2017 · Vol. 16(3) · pp. 1656–1672
Yuanwei LiuZhijin QinMaged ElkashlanYue GaoLajos Hanzo

Abstract

This paper investigates the physical layer security of non-orthogonal multiple access (NOMA) in large-scale networks with invoking stochastic geometry. Both single-antenna and multiple-antenna aided transmission scenarios are considered, where the base station (BS) communicates with randomly distributed NOMA users. In the single-antenna scenario, we adopt a protected zone around the BS to establish an eavesdropper-exclusion area with the aid of careful channel ordering of the NOMA users. In the multiple-antenna scenario, artificial noise is generated at the BS for further improving the security of a beamforming-aided system. In order to characterize the secrecy performance, we derive new exact expressions of the security outage probability for both single-antenna and multiple-antenna aided scenarios. For the single-antenna scenario, we perform secrecy diversity order analysis of the selected user pair. The analytical results derived demonstrate that the secrecy diversity order is determined by the specific user having the worse channel condition among the selected user pair. For the multiple-antenna scenario, we derive the asymptotic secrecy outage probability, when the number of transmit antennas tends to infinity. Monte Carlo simulations are provided for verifying the analytical results derived and to show that: 1) the security performance of the NOMA networks can be improved by invoking the protected zone and by generating artificial noise at the BS and 2) the asymptotic secrecy outage probability is close to the exact secrecy outage probability.

Advanced Wireless Communication TechnologiesWireless Communication Security TechniquesAdvanced MIMO Systems OptimizationArtificial noiseComputer sciencePhysical layerSecrecyStochastic geometryAntenna (radio)Computer networkBase stationBeamformingTopology (electrical circuits)

Funding

  • Engineering and Physical Sciences Research Council
  • European Research Council
Citations
643
FWCI
53.32
field-weighted impact
References
56
Percentile
100%
vs. same field & year
Citations per year
References
A General MIMO Framework for NOMA Downlink and Uplink Transmission Based on Signal Alignment
IEEE Transactions on Wireless Communications · 2016 · 610 citations
Guaranteeing Secrecy using Artificial Noise
IEEE Transactions on Wireless Communications · 2008 · 1,895 citations
Cooperative Non-orthogonal Multiple Access With Simultaneous Wireless Information and Power Transfer
IEEE Journal on Selected Areas in Communications · 2016 · 902 citations
Wireless Information-Theoretic Security
IEEE Transactions on Information Theory · 2008 · 1,855 citations
Application of Non-Orthogonal Multiple Access in LTE and 5G Networks
IEEE Communications Magazine · 2017 · 2,008 citations
Broadcast channels
IEEE Transactions on Information Theory · 1972 · 1,710 citations
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