DocumentCode :
3613100
Title :
A tractable approach to analyzing the physical-layer security in K-tier heterogeneous cellular networks
Author :
Zhong Zhihao ; Peng Janhua ; Luo Wenyu ; Huang Kaizhi
Author_Institution :
Nat. Digital Switching Syst. Eng. & Technol. Res. Center, Zhengzhou, China
Volume :
12
fYear :
2015
fDate :
12/1/2015 12:00:00 AM
Firstpage :
166
Lastpage :
173
Abstract :
This study proposes a tractable approach to analyze the physical-layer security in the downlink of a multi-tier heterogeneous cellular network. This method is based on stochastic geometry, has low computational complexity, and uses the two-dimensional Poisson point process to model the locations of K-tier base stations and receivers, including those of legitimate users and eavesdroppers. Then, the achievable secrecy rates for an arbitrary user are determined and the upper and lower bounds of secrecy coverage probability derived on the condition that cross-tier interference is the main contributor to aggregate interference. Finally, our analysis results reveal the innate connections between information-theoretic security and the spatial densities of legitimate and malicious nodes.
Keywords :
cellular radio; probability; stochastic processes; telecommunication security; K-tier base stations; K-tier heterogeneous cellular networks; achievable secrecy rates; arbitrary user; cross-tier interference; eavesdroppers; information-theoretic security; legitimate nodes; legitimate users; malicious nodes; multi-tier heterogeneous cellular network; physical-layer security; secrecy coverage probability; spatial densities; stochastic geometry; two-dimensional Poisson point process; Downlink; Interference; Mobile communication; Numerical models; Security; Stochastic processes; Wireless communication; heterogeneous cellular networks; physical layer security; secrecy coverage probability; stochastic geometry;
fLanguage :
English
Journal_Title :
Communications, China
Publisher :
ieee
ISSN :
1673-5447
Type :
jour
DOI :
10.1109/CC.2015.7386165
Filename :
7386165
Link To Document :
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