DocumentCode
1581251
Title
Security for smart mobile networks: The NEMESYS approach
Author
Gelenbe, Erol ; Gorbil, Gokce ; Tzovaras, D. ; Liebergeld, Steffen ; Garcia, D. ; Baltatu, Madalina ; Lyberopoulos, George
Author_Institution
Dept. of Electr. & Electron. Eng., Imperial Coll. London, London, UK
fYear
2013
Firstpage
63
Lastpage
69
Abstract
The growing popularity of smart mobile devices such as smartphones and tablets has made them an attractive target for cyber-criminals, resulting in a rapidly growing and evolving mobile threat as attackers experiment with new business models by targeting mobile users. With the emergence of the first large-scale mobile botnets, the core network has also become vulnerable to distributed denial-of-service attacks such as the signaling attack. Furthermore, complementary access methods such as Wi-Fi and femtocells introduce additional vulnerabilities for the mobile users as well as the core network. In this paper, we present the NEMESYS approach to smart mobile network security, to develop novel security technologies for seamless service provisioning in the smart mobile ecosystem, and to improve mobile network security through a better understanding of the threat landscape.
Keywords
femtocellular radio; smart phones; telecommunication security; telecommunication signalling; NEMESYS approach; Wi-Fi; attackers; business models; complementary access methods; core network; cyber-criminals; distributed denial-of-service attacks; femtocells; large-scale mobile botnets; mobile network security; mobile threat; mobile users; seamless service provisioning; security technologies; signaling attack; smart mobile ecosystem; smart mobile network security; smartphones; tablets; Androids; Humanoid robots; Malware; Mobile communication; Mobile computing; Mobile handsets; Mobile network security; anomaly detection; femtocell security; virtual mobile client honeypot; visual analytics;
fLanguage
English
Publisher
ieee
Conference_Titel
Global High Tech Congress on Electronics (GHTCE), 2013 IEEE
Conference_Location
Shenzhen
Type
conf
DOI
10.1109/GHTCE.2013.6767242
Filename
6767242
Link To Document