An efficient SIM-based authentication and key distribution method for wireless LANs
Xiao Liu, Abraham O. Fapojuwo
Abstract
Xiao Liu, Abraham O. Fapojuwo
Abstract
In this paper, we propose a subscriber identity module (SIM) based authentication protocol that incorporates the existing mature authentication and billing infrastructure of mobile telephony. During the design, the relationship among power/resource consumption characteristics of authentication protocols, handoff speed, and security level are cautiously considered and analyzed. The proposed SIM-based authentication method achieves the fast handoff speed and minimum resource consumption while achieving the same security level as the EAP-TLS (extensible authentication protocol transport level security) authentication protocol. We demonstrate the capability of the proposed protocol using simulation approach. It is shown that the proposed SIM-based authentication and key distribution method is suitable for achieving a high security level in WLANs while reducing latency of handoffs in wireless local area networks
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In this paper, we propose a subscriber identity module (SIM) based authentication protocol that incorporates the existing mature authentication and billing infrastructure of mobile telephony. During the design, the relationship among power/resource consumption characteristics of authentication protocols, handoff speed, and security level are cautiously considered and analyzed. The proposed SIM-based authentication method achieves the fast handoff speed and minimum resource consumption while achieving the same security level as the EAP-TLS (extensible authentication protocol transport level security) authentication protocol. We demonstrate the capability of the proposed protocol using simulation approach. It is shown that the proposed SIM-based authentication and key distribution method is suitable for achieving a high security level in WLANs while reducing latency of handoffs in wireless local area networks
Key concepts: Computer network, Computer science, Authentication protocol, Lightweight Extensible Authentication Protocol, Authentication (law), Handover, Challenge-Handshake Authentication Protocol, Key (lock)