Title :
Risk-Aware Mitigation for MANET Routing Attacks
Author :
Zhao, Ziming ; Hu, Hongxin ; Ahn, Gail-Joon ; Wu, Ruoyu
Author_Institution :
Security Eng. for Future Comput. Lab., Arizona State Univ., Tempe, AZ, USA
Abstract :
Mobile Ad hoc Networks (MANET) have been highly vulnerable to attacks due to the dynamic nature of its network infrastructure. Among these attacks, routing attacks have received considerable attention since it could cause the most devastating damage to MANET. Even though there exist several intrusion response techniques to mitigate such critical attacks, existing solutions typically attempt to isolate malicious nodes based on binary or naïve fuzzy response decisions. However, binary responses may result in the unexpected network partition, causing additional damages to the network infrastructure, and naïve fuzzy responses could lead to uncertainty in countering routing attacks in MANET. In this paper, we propose a risk-aware response mechanism to systematically cope with the identified routing attacks. Our risk-aware approach is based on an extended Dempster-Shafer mathematical theory of evidence introducing a notion of importance factors. In addition, our experiments demonstrate the effectiveness of our approach with the consideration of several performance metrics.
Keywords :
mobile ad hoc networks; telecommunication network routing; MANET routing attacks; attack mitigation; binary fuzzy response decision; extended Dempster-Shafer mathematical theory; intrusion response techniques; malicious node isolation; mobile ad hoc networks; naive fuzzy response decision; risk-aware mitigation; risk-aware response mechanism; Adaptation models; Authentication; Computer security; Mobile ad hoc networks; Risk management; Routing protocols; Mobile ad hoc networks; dempster-shafer theory.; intrusion response; risk aware;
Journal_Title :
Dependable and Secure Computing, IEEE Transactions on
DOI :
10.1109/TDSC.2011.51