DocumentCode
20718
Title
Amplify-and-Forward Compressed Sensing as a Physical-Layer Secrecy Solution in Wireless Sensor Networks
Author
Barcelo-Llado, Joan Enric ; Morell, Antoni ; Seco-Granados, Gonzalo
Author_Institution
Telecommun. & Syst. Eng. Dept., Univ. Auonoma de Barcelona, Barcelona, Spain
Volume
9
Issue
5
fYear
2014
fDate
May-14
Firstpage
839
Lastpage
850
Abstract
In this paper, we assess the physical-layer secrecy performance of the amplify-and-forward compressed sensing (AF-CS) framework when malicious eavesdropping nodes are listening. In particular, we investigate the robustness of the AF-CS scheme in the presence of a group of coordinated eavesdropping nodes under the assumption that they have corrupted channel state information. In order to fulfil this assumption, we propose a channel estimation technique based on pseudorandom pilots. This technique introduces extra uncertainty only in the channel estimation of the eavesdroppers. Our simulation results evaluate the physical-layer protection as a function of the total number of coordinated eavesdroppers and the level of channel estimation distortion of the eavesdroppers. We demonstrate that a small number of eavesdroppers (small being defined later on) has a zero probability of recovering the intended signal. We also show that a very large number of eavesdropping nodes are required to perfectly recover the signal in comparison with other distributed compressed sensing schemes in the literature.
Keywords
amplify and forward communication; channel estimation; compressed sensing; wireless sensor networks; AF-CS; amplify-and-forward compressed sensing; channel estimation; coordinated eavesdropping nodes; corrupted channel state information; malicious eavesdropping nodes; physical-layer protection; physical-layer secrecy solution; pseudorandom pilots; wireless sensor networks; zero probability; Compressed sensing; Receivers; Relays; Sensors; Vectors; Wireless communication; Wireless sensor networks; Communication system security; compressed sensing; physical layer; wireless sensor networks;
fLanguage
English
Journal_Title
Information Forensics and Security, IEEE Transactions on
Publisher
ieee
ISSN
1556-6013
Type
jour
DOI
10.1109/TIFS.2014.2309855
Filename
6756993
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