Malware Detection for Mobile Devices Using Software-Defined Networking

被引:44
作者
Jin, Ruofan [1 ]
Wang, Bing [1 ]
机构
[1] Univ Connecticut, Dept Comp Sci & Engn, Storrs, CT 06269 USA
来源
2013 SECOND GENI RESEARCH AND EDUCATIONAL EXPERIMENT WORKSHOP (GREE) | 2013年
关键词
D O I
10.1109/GREE.2013.24
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The rapid adoption of mobile devices comes with the growing prevalence of mobile malware. Mobile malware poses serious threats to personal information and creates challenges in securing network. Traditional network services provide connectivity but do not have any direct mechanism for security protection. The emergence of Software-Defined Networking (SDN) provides a unique opportunity to achieve network security in a more efficient and flexible manner. In this paper, we analyze the behaviors of mobile malware, propose several mobile malware detection algorithms, and design and implement a malware detection system using SDN. Our system detects mobile malware by identifying suspicious network activities through real-time traffic analysis, which only requires connection establishment packets. Specifically, our detection algorithms are implemented as modules inside the OpenFlow controller, and the security rules can be imposed in real time. We have tested our system prototype using both a local testbed and GENI infrastructure. Test results confirm the feasibility of our approach. In addition, the stress testing results show that even unoptimized implementations of our algorithms do not affect the performance of the OpenFlow controller significantly.
引用
收藏
页码:81 / 88
页数:8
相关论文
共 50 条
[31]   Misreporting Attacks in Software-Defined Networking [J].
Burke, Quinn ;
McDaniel, Patrick ;
La Porta, Thomas ;
Yu, Mingli ;
He, Ting .
SECURITY AND PRIVACY IN COMMUNICATION NETWORKS (SECURECOMM 2020), PT I, 2020, 335 :276-296
[32]   Software-Defined Networking: On the Verge of a Breakthrough? [J].
Ortiz, Sixto, Jr. .
COMPUTER, 2013, 46 (07) :10-12
[33]   A Survey on Multicasting in Software-Defined Networking [J].
Islam, Salekul ;
Muslim, Nasif ;
Atwood, J. William .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2018, 20 (01) :355-387
[34]   A Survey of Multicast in Software-Defined Networking [J].
Gu, Weidong ;
Zhang, Xinchang ;
Gong, Bin ;
Wang, Lu .
PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON INFORMATION ENGINEERING FOR MECHANICS AND MATERIALS, 2015, 21 :1096-1100
[35]   Verification Framework for Software-Defined Networking [J].
Kang, Miyoung ;
Cho, Jong Jin .
2022 24TH INTERNATIONAL CONFERENCE ON ADVANCED COMMUNICATION TECHNOLOGY (ICACT): ARITIFLCIAL INTELLIGENCE TECHNOLOGIES TOWARD CYBERSECURITY, 2022, :518-523
[36]   Software-defined networking (SDN): a survey [J].
Benzekki, Kamal ;
El Fergougui, Abdeslam ;
Elalaoui, Abdelbaki Elbelrhiti .
SECURITY AND COMMUNICATION NETWORKS, 2016, 9 (18) :5803-5833
[37]   Toward Software-Defined Middlebox Networking [J].
Gember, Aaron ;
Prabhu, Prathmesh ;
Ghadiyali, Zainab ;
Akella, Aditya .
PROCEEDINGS OF THE 11TH ACM WORKSHOP ON HOT TOPICS IN NETWORKS (HOTNETS-XI), 2012, :7-12
[38]   A Software-Defined Approach to IoT Networking [J].
Christian Jacquenet ;
Mohamed Boucadair .
ZTECommunications, 2016, 14 (01) :61-66
[39]   Software-Defined Networking of Linux Containers [J].
Costache, Cosmin ;
Machidon, Octavian ;
Mladin, Adrian ;
Sandu, Florin ;
Bocu, Razvan .
2014 ROEDUNET CONFERENCE 13TH EDITION: NETWORKING IN EDUCATION AND RESEARCH JOINT EVENT RENAM 8TH CONFERENCE, 2014,
[40]   Software-Defined Networking: A Comprehensive Survey [J].
Kreutz, Diego ;
Ramos, Fernando M. V. ;
Verissimo, Paulo Esteves ;
Rothenberg, Christian Esteve ;
Azodolmolky, Siamak ;
Uhlig, Steve .
PROCEEDINGS OF THE IEEE, 2015, 103 (01) :14-76