Mean Time to Security Failure of VM-Based Intrusion Tolerant Systems
Title | Mean Time to Security Failure of VM-Based Intrusion Tolerant Systems |
Publication Type | Conference Paper |
Year of Publication | 2016 |
Authors | Zheng, J., Okamura, H., Dohi, T. |
Conference Name | 2016 IEEE 36th International Conference on Distributed Computing Systems Workshops (ICDCSW) |
Date Published | June 2016 |
Publisher | IEEE |
ISBN Number | 978-1-5090-3686-8 |
Keywords | composability, Computational modeling, Computers, Electronic mail, intrusion tolerance, Markov model, Markov processes, mean time to security failure, MTTSF, pubcrawl, QoS, quality of service, queueing theory, Resiliency, security, security of data, Time factors, virtual machine, virtual machines, virtualization, VM-based intrusion tolerant systems |
Abstract | Computer systems face the threat of deliberate security intrusions due to malicious attacks that exploit security holes or vulnerabilities. In practice, these security holes or vulnerabilities still remain in the system and applications even if developers carefully execute system testing. Thus it is necessary and important to develop the mechanism to prevent and/or tolerate security intrusions. As a result, the computer systems are often evaluated with confidentiality, integrity and availability (CIA) criteria from the viewpoint of security, and security is treated as a QoS (Quality of Service) attribute at par with other QoS attributes such as capacity and performance. In this paper, we present the method for quantifying a security attribute called mean time to security failure (MTTSF) of a VM-based intrusion tolerant system based on queueing theory. |
URL | https://ieeexplore.ieee.org/document/7756220/ |
DOI | 10.1109/ICDCSW.2016.30 |
Citation Key | zheng_mean_2016 |
- QoS
- VM-based intrusion tolerant systems
- Virtualization
- virtual machines
- virtual machine
- Time factors
- security of data
- security
- Resiliency
- queueing theory
- quality of service
- composability
- pubcrawl
- MTTSF
- mean time to security failure
- Markov processes
- Markov model
- intrusion tolerance
- Electronic mail
- Computers
- Computational modeling