Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory

This paper presents a model for intrusion prevention and self-healing system for network security. The model detects, prevents, and heals harmful events, which are the actual reasons for damage of any of the system’s components. The proposed model explores the design and implementation of artificial...

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Main Authors: Muna, Elsadig, Azween, Abdullah
Format: Article
Language:English
Published: 2009
Subjects:
Online Access:http://scholars.utp.edu.my/id/eprint/2595/
http://scholars.utp.edu.my/id/eprint/2595/1/finall-paper.docx
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author Muna, Elsadig
Azween, Abdullah
author_facet Muna, Elsadig
Azween, Abdullah
author_sort Muna, Elsadig
building UTP Institutional Repository
collection Online Access
description This paper presents a model for intrusion prevention and self-healing system for network security. The model detects, prevents, and heals harmful events, which are the actual reasons for damage of any of the system’s components. The proposed model explores the design and implementation of artificial immune systems (AISs) inspired by the human immune system. A novel approaches for network security based on the combination of biological intrusion prevention (IP) and self-healing concepts are implemented in the proposed model. These approaches are based upon data inspired by the human immune system (HIS), which applied to the autonomous defense system. The system integrates an artificial immune intrusion prevention system for network security inspired by the immunology theory known as danger theory and adaptive immune system. The present model looks at the danger model and its application to attack defense in order to create a fully decentralized model. The intrusion prevention system (IPS) analyzes the behavior of system processes and network traffic to detect harmful events. Abnormal behaviors are the actual reason for damage of any of the system’s components. The detection of the damage caused by different types of malicious events or attack profiles is used to trigger the self - healing (SH) mechanism. This system is autonomous and enhances the fault repair and system recovery.
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spelling oai:scholars.utp.edu.my:25952010-07-21T00:25:37Z http://scholars.utp.edu.my/id/eprint/2595/ Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory Muna, Elsadig Azween, Abdullah QA75 Electronic computers. Computer science This paper presents a model for intrusion prevention and self-healing system for network security. The model detects, prevents, and heals harmful events, which are the actual reasons for damage of any of the system’s components. The proposed model explores the design and implementation of artificial immune systems (AISs) inspired by the human immune system. A novel approaches for network security based on the combination of biological intrusion prevention (IP) and self-healing concepts are implemented in the proposed model. These approaches are based upon data inspired by the human immune system (HIS), which applied to the autonomous defense system. The system integrates an artificial immune intrusion prevention system for network security inspired by the immunology theory known as danger theory and adaptive immune system. The present model looks at the danger model and its application to attack defense in order to create a fully decentralized model. The intrusion prevention system (IPS) analyzes the behavior of system processes and network traffic to detect harmful events. Abnormal behaviors are the actual reason for damage of any of the system’s components. The detection of the damage caused by different types of malicious events or attack profiles is used to trigger the self - healing (SH) mechanism. This system is autonomous and enhances the fault repair and system recovery. 2009-06 Article PeerReviewed application/msword en http://scholars.utp.edu.my/id/eprint/2595/1/finall-paper.docx Muna, Elsadig and Azween, Abdullah (2009) Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory. Computer Science Letters, 1 (1).
spellingShingle QA75 Electronic computers. Computer science
Muna, Elsadig
Azween, Abdullah
Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title_full Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title_fullStr Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title_full_unstemmed Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title_short Biological Inspired Intrusion Prevention and Self-healing System for Network Security Based on Danger Theory
title_sort biological inspired intrusion prevention and self-healing system for network security based on danger theory
topic QA75 Electronic computers. Computer science
url http://scholars.utp.edu.my/id/eprint/2595/
http://scholars.utp.edu.my/id/eprint/2595/1/finall-paper.docx