Measuring the Impact of DoS Attack on Availability: Empirical Study Based on Accessibility
- 1 Directorate of IT & SS, University of Kashmir, Srinagar, India
- 2 Computer Science, DSE, Srinagar, India
Abstract
Information Security is determined by three well know security parameters i.e. Confidentiality, Integrity and Availability. Availability is an important pillar when it comes to security of an information system. It is dependent upon the reliability, timeliness and accessibility of the Information System. This paper presents an analytical view of the fact that when Accessibility is degraded during the presence of an ongoing attack, the other factors reliability and timeliness can also get affected, therefore creating a degrading impact on the overall Availability of the system, which eventually leads to the Denial of Service Attack and therefore affecting the security of the System.
- Khazanchi, D. and Martin, A.P. (2009) Information Availability. In: Gupta, J.N.D. and Sharma, S., Eds., Handbook of Research on Information Security and Assurance, IGI Global, Hershey, 230-239. https://doi.org/10.4018/978-1-59904-855-0.ch019
- Qadir, S. and Quadri, S.M.K. (2016) Information Availability: An Insight into the Most Important Attribute of Information Security. Journal of Information Security, 7, 185-194. https://doi.org/10.4236/jis.2016.73014
- Mir, S.Q. and Quadri, S.M.K. (2019) Component Based Metric for Evaluating Availability of an Information System: An Empirical Evaluation. International Journal of Information Technology, 11, 277-285. https://doi.org/10.1007/s41870-018-0220-2
- Mir, S.Q. and Quadri, S.M.K. (2017) Metric for Evaluating Availability of an Information System: A Quantitative Approach Based on Component Dependency. International Journal of Network Security & Its Applications, 9, 1-11. https://doi.org/10.5121/ijnsa.2017.9201
- Mir, S.Q. (2018) Ensuring Availability of Information by Preventing Denial of Service Attack. Doctoral Dissertation, University of Kashmir, Kashmir.
- Lyu, M.R. (1996) Handbook of Software Reliability Engineering.
- Sahu, K. and Srivastava, R.K. (2019) Revisiting Software Reliability. In: Data Management, Analytics and Innovation, Springer, Berlin, 221-235. https://doi.org/10.1007/978-981-13-1402-5_17
- Rohani, H. and Roosta, A.K. (2014) Calculating Total System Availability. Information Services Organization, Amsterdam.
- Kone, D. (2021) High Availability Systems. Master’s Thesis, University of Helsinki, Helsinki.
- Wang, A.J.A. (2005) Information Security Models and Metrics. Proceedings of the 43rd Annual Southeast Regional Conference, Volume 2, 178-184. https://doi.org/10.1145/1167253.1167295
- Engelmann, C., Scott, S.L., Leangsuksun, C. and He, X. (2008) Symmetric Active/Active High Availability for High-Performance Computing System Services: Accomplishments and Limitations. 2008 Eighth IEEE International Symposium on Cluster Computing and the Grid (CCGRID), Lyon, 19-22 May 2008, 813-818. https://doi.org/10.1109/CCGRID.2008.78
- Marcus, E. and Stern, H. (2003) Blueprints for High Availability. John Wiley & Sons, Hoboken.
- (2022) Siege (Software). Wikipedia, the Free Encyclopaedia. https://en.wikipedia.org/w/index.php?title=Siege_(software)&oldid=722155219