Title :
Universal authentication protocols for anonymous wireless communications
Author :
Yang, Guomin ; Huang, Qiong ; Wong, Duncan S. ; Deng, Xiaotie
Author_Institution :
Temasek Labs., Nat. Univ. of Singapore, Singapore, Singapore
fDate :
1/1/2010 12:00:00 AM
Abstract :
A secure roaming protocol allows a roaming user U to visit a foreign server V and establish a session key in an authenticated way such that U authenticates V and at the same time convinces V that it is a legitimate subscriber of some server H, called the home server of U. The conventional approach requires the involvement of all the three parties. In this paper, we propose a new approach which requires only two parties, U and V, to get involved. We propose two protocols: one provides better efficiency and supports user anonymity to an extent comparable to that provided by current mobile systems; and the other one achieves strong user anonymity that protects U´s identity against both eavesdroppers and foreign servers and is currently the strongest notion of user anonymity defined for secure roaming. Both protocols are universal in the sense that the same protocol and signaling flows are used regardless of the domain (home or foreign) that U is visiting. This helps reducing the system complexity in practice. We also propose a practical user revocation mechanism, which is one of the most challenging problems for two-party roaming supporting strong user anonymity. Our solutions can be applied in various kinds of roaming networks such as cellular networks and interconnected wireless local area networks.
Keywords :
authorisation; cryptographic protocols; signalling protocols; wireless LAN; wireless channels; anonymous wireless communications; cellular networks; current mobile systems; home server; interconnected wireless local area networks; practical user revocation; roaming networks; secure roaming protocol; signaling protocol; strong user anonymity; system complexity; universal authentication protocols; Authentication; Home automation; LAN interconnection; Land mobile radio cellular systems; Network servers; Privacy; Protection; Roaming; Wireless application protocol; Wireless communication; Secure roaming, authentication; anonymity, privacy, revocation; key establishment;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2010.01.081219