Title :
A hierarchical, autonomous, and forecasting cloud IDS
Author :
Kholidy, Hisham A. ; Erradi, Abdelkarim ; Abdelwahed, Sherif ; Baiardi, Fabrizio
Author_Institution :
Dept. of Comput. Sci. & Eng., Qatar Univ., Doha, Qatar
fDate :
Aug. 31 2013-Sept. 2 2013
Abstract :
Cloud computing supports distributed service oriented paradigm, multi-domain and multi-users administrative infrastructure. Due to the distributed nature of the cloud environment, it has high intrusion prospects and suspect of security infringements because the intruders can exploit the large amount of resources in cloud for their attacks. Furthermore, most of current Intrusion Detection System (IDS) solutions do not offer features for cloud environments. This paper presents a hierarchical, autonomous, and forecasting cloud based IDS (HAF-CIDS) that continuously monitors and analyzes system events and computes the risk level. The proposed system improves the detection accuracy through the integration with a forecasting engine that runs the Holt-Winters (HW) algorithm. HAF-CIDS uses HW forecast feature in detecting network aberrant behaviours. Furthermore, it can recover any corrupted data or affected services by interacting with an autonomous controller that selects the most appropriate response to detected attacks.
Keywords :
cloud computing; security of data; HAF-CIDS; HW algorithm; Holt-Winters algorithm; cloud computing; cloud environment; distributed service oriented paradigm; forecasting engine; hierarchical autonomous forecasting cloud based IDS; intrusion detection system; multidomain multiusers administrative infrastructure; network aberrant behaviour detection; security infringements; Abstracts; Authentication; Detectors; Forecasting; Noise measurement; Holt-Winters; Intrusion detection; autonomous response; cloud computing; forecasting; risk assessment;
Conference_Titel :
Modelling, Identification & Control (ICMIC), 2013 Proceedings of International Conference on
Conference_Location :
Cairo
Print_ISBN :
978-0-9567157-3-9