DocumentCode :
3604180
Title :
Achieving Secrecy Without Knowing the Number of Eavesdropper Antennas
Author :
Biao He ; Xiangyun Zhou ; Abhayapala, Thushara D.
Author_Institution :
Res. Sch. of Eng., Australian Nat. Univ., Canberra, ACT, Australia
Volume :
14
Issue :
12
fYear :
2015
Firstpage :
7030
Lastpage :
7043
Abstract :
The existing research on physical layer security commonly assumes the number of eavesdropper antennas to be known. Although this assumption allows one to easily compute the achievable secrecy rate, it can hardly be realized in practice. In this paper, we provide an innovative approach to studying secure communication systems without knowing the number of eavesdropper antennas by introducing the concept of spatial constraint into physical layer security. Specifically, the eavesdropper is assumed to have a limited spatial region to place (possibly an infinite number of) antennas. From a practical point of view, knowing the spatial constraint of the eavesdropper is much easier than knowing the number of eavesdropper antennas. We derive the achievable secrecy rates of the spatially-constrained system with and without friendly jamming. We show that a non-zero secrecy rate is achievable with the help of a friendly jammer, even if the eavesdropper places an infinite number of antennas in its spatial region. Furthermore, we find that the achievable secrecy rate does not monotonically increase with the jamming power, and hence, we obtain the closed-form solution of the optimal jamming power that maximizes the secrecy rate.
Keywords :
antenna arrays; jamming; telecommunication security; achievable secrecy rate computation; optimal jamming power; physical layer security; secrecy capacity; secure communication systems; Jamming; Physical layer; Receiving antennas; Physical layer security; friendly jamming; secrecy capacity; spatial constraints;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2463818
Filename :
7175051
Link To Document :
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