Local fast re-authentication protocol for 3G-WLAN interworking architecture
Ali Al Shidhani, Victor C. M. Leung
Abstract
Ali Al Shidhani, Victor C. M. Leung
Abstract
Many advantages are attained by integrating 3G and WLAN systems to form a 3G-WLAN interworking architecture. However, securing the architecture is a great challenge because of the number of vulnerabilities introduced. EAP-AKA is the authentication solution adopted by the 3GPP to secure accesses to 3G-WLAN architectures. Two types of EAP-AKA authentication are available, full authentication and fast re-authentication. This paper presents a localized fast re-authentication protocol to substitute the standard fast re-authentication protocol. The proposed protocol achieves faster re-authentication by locally performing the authentication procedure. A new keying framework is introduced to minimize authentication delays during re-authentication and handover operations.
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Many advantages are attained by integrating 3G and WLAN systems to form a 3G-WLAN interworking architecture. However, securing the architecture is a great challenge because of the number of vulnerabilities introduced. EAP-AKA is the authentication solution adopted by the 3GPP to secure accesses to 3G-WLAN architectures. Two types of EAP-AKA authentication are available, full authentication and fast re-authentication. This paper presents a localized fast re-authentication protocol to substitute the standard fast re-authentication protocol. The proposed protocol achieves faster re-authentication by locally performing the authentication procedure. A new keying framework is introduced to minimize authentication delays during re-authentication and handover operations.
Key concepts: Authentication protocol, Lightweight Extensible Authentication Protocol, Challenge-Handshake Authentication Protocol, Computer network, Computer science, Data Authentication Algorithm, Generic Bootstrapping Architecture, Authentication (law)