Robust Multi-Factor Authentication for Fragile Communications
Title | Robust Multi-Factor Authentication for Fragile Communications |
Publication Type | Journal Article |
Year of Publication | 2014 |
Authors | Xinyi Huang, Yang Xiang, Bertino, E., Jianying Zhou, Li Xu |
Journal | Dependable and Secure Computing, IEEE Transactions on |
Volume | 11 |
Pagination | 568-581 |
Date Published | Nov |
ISSN | 1545-5971 |
Keywords | authentication, authentication mechanism, authentication process, authentication service, authorisation, biometrics (access control), Communication channels, Cyber Attacks, digital signatures, efficiency, emergency situations, file servers, fragile communications, Large-scale systems, multi-factor, natural disasters, privacy, Protocols, remote central authentication server, robust multifactor authentication, secure generic multifactor authentication protocol, Servers, slow connection situation, stand-alone, stand-alone authentication, telecommunication services, user authentication |
Abstract | In large-scale systems, user authentication usually needs the assistance from a remote central authentication server via networks. The authentication service however could be slow or unavailable due to natural disasters or various cyber attacks on communication channels. This has raised serious concerns in systems which need robust authentication in emergency situations. The contribution of this paper is two-fold. In a slow connection situation, we present a secure generic multi-factor authentication protocol to speed up the whole authentication process. Compared with another generic protocol in the literature, the new proposal provides the same function with significant improvements in computation and communication. Another authentication mechanism, which we name stand-alone authentication, can authenticate users when the connection to the central server is down. We investigate several issues in stand-alone authentication and show how to add it on multi-factor authentication protocols in an efficient and generic way. |
URL | https://ieeexplore.ieee.org/document/6701152 |
DOI | 10.1109/TDSC.2013.2297110 |
Citation Key | 6701152 |
- Large-scale systems
- user authentication
- telecommunication services
- stand-alone authentication
- stand-alone
- slow connection situation
- Servers
- secure generic multifactor authentication protocol
- robust multifactor authentication
- remote central authentication server
- Protocols
- privacy
- natural disasters
- multi-factor
- authentication
- fragile communications
- file servers
- emergency situations
- efficiency
- digital signatures
- Cyber Attacks
- Communication channels
- biometrics (access control)
- authorisation
- authentication service
- authentication process
- authentication mechanism