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Gigabit Network Intrusion Detection System Using Extended Bloom Filter in Reconfigurable Hardware

Publication Type : Book Chapter

Publisher : Proceedings of the Second International Conference on Computer and Communication Technologies: IC3T 2015.

Source : Proceedings of the Second International Conference on Computer and Communication Technologies: IC3T 2015, Volume 1, Springer India, Number 379, New Delhi, p.11–19 (2016)

Url : http://dx.doi.org/10.1007/978-81-322-2517-1_2

ISBN : 9788132225171

Keywords : Extended bloom filter, field programmable gate array, Network intrusion detection, Reference vector

Campus : Coimbatore

School : School of Engineering

Center : TIFAC CORE in Cyber Security

Department : Computer Science

Year : 2016

Abstract : Network intrusion detection system collects information from network and identifies all the possible existing network security threats. Software based detection systems are common but are not good enough for the current network security requirements. Present day network intrusion detection needs wire-level data transfer to avoid the inefficiency in pattern matching process. Hardware based solutions like field programmable gate array which is known for its high processing capability can easily solve these issues. This paper implements a hardware based gigabit intrusion detection system using extended Bloom filter concepts. The paper presents a solution to reduce the high error rate of Bloom Filter by introducing a Reference Vector to the work and evaluates its performance. The reference vector verifies the Bloom filter output for any possible false positive results and reduces the error rate in the system.

Cite this Research Publication : A. Eldho Jose and Dr. Gireesh K. T., “Gigabit Network Intrusion Detection System Using Extended Bloom Filter in Reconfigurable Hardware”, in Proceedings of the Second International Conference on Computer and Communication Technologies: IC3T 2015, Volume 1, C. Suresh Satapathy, Raju, S. K., Mandal, K. Jyotsna, and Bhateja, V., Eds. New Delhi: Springer India, 2016, pp. 11–19.

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