Title
Artificial-Noise-Aided Transmission in Multi-Antenna Relay Wiretap Channels with Spatially Random Eavesdroppers
Abstract
We design a new relay-aided secure transmission scheme, in which a source communicates with a destination through a trusted decode-and-forward relay in the presence of spatially random-distributed non-colluding eavesdroppers. We consider a general antenna configuration, in which the source, relay, destination, and eavesdroppers are equipped with multiple antennas. We assume that both the source and the relay transmit artificial noise signals in addition to information signals. We also assume that the source and the relay adopt different codebooks, and that the transmitted signals from the source and relay are not jointly processed at each eavesdropper. We first derive a closed-form expression for the transmission outage probability and a new expression for the secrecy outage probability. Notably, these expressions are valid for an arbitrary number of antennas at the source, relay, and destination. We then derive simple yet valuable expressions for the asymptotic transmission outage probability and the asymptotic secrecy outage probability, which reveal the secrecy performance when the number of antennas at the source grows sufficiently large. Using our expressions, we quantify a practical performance metric, namely, the secrecy throughput, under a secrecy outage probability constraint. We further determine the system and channel parameters that maximize the secrecy throughput, leading to analytical security solutions suitable for real-world deployment.
Year
DOI
Venue
2015
10.1109/TWC.2016.2602337
IEEE Trans. Wireless Communications
Keywords
Field
DocType
Relays,Antennas,Throughput,Wireless communication,Network security,Physical layer
Relay channel,Topology,Mathematical optimization,Secure transmission,Performance metric,Secrecy,Communication channel,Computer network,Artificial noise,Throughput,Mathematics,Relay
Journal
Volume
Issue
ISSN
abs/1509.05486
11
1536-1276
Citations 
PageRank 
References 
9
0.46
35
Authors
4
Name
Order
Citations
PageRank
Chenxi Liu19912.86
Yang, N.2765.28
Robert A. Malaney340137.72
Jinhong Yuan42966202.61