An Extended Chaotic Maps-Based Three-Party Password-Authenticated Key Agreement with User Anonymity
نویسندگان
چکیده
User anonymity is one of the key security features of an authenticated key agreement especially for communicating messages via an insecure network. Owing to the better properties and higher performance of chaotic theory, the chaotic maps have been introduced into the security schemes, and hence numerous key agreement schemes have been put forward under chaotic-maps. Recently, Xie et al. released an enhanced scheme under Farash et al.'s scheme and claimed their improvements could withstand the security loopholes pointed out in the scheme of Farash et al., i.e., resistance to the off-line password guessing and user impersonation attacks. Nevertheless, through our careful analysis, the improvements were released by Xie et al. still could not solve the problems troubled in Farash et al‥ Besides, Xie et al.'s improvements failed to achieve the user anonymity and the session key security. With the purpose of eliminating the security risks of the scheme of Xie et al., we design an anonymous password-based three-party authenticated key agreement under chaotic maps. Both the formal analysis and the formal security verification using AVISPA are presented. Also, BAN logic is used to show the correctness of the enhancements. Furthermore, we also demonstrate that the design thwarts most of the common attacks. We also make a comparison between the recent chaotic-maps based schemes and our enhancements in terms of performance.
منابع مشابه
Enhanced smartcard-based password-authenticated key agreement using extended chaotic maps
A smartcard based password-authenticated key agreement scheme enables a legal user to log in to a remote authentication server and access remote services through public networks using a weak password and a smart card. Lin recently presented an improved chaotic maps-based password-authenticated key agreement scheme that used smartcards to eliminate the weaknesses of the scheme of Guo and Chang, ...
متن کاملOn the Security of a Chaotic Maps-based Three-party Authenticated Key Agreement Protocol
Chaotic map has been receiving increasing attention in the cryptographic literature. There are various scholars working on a particular type of authenticated key exchange protocol using chaotic map in the recent years. Very recently, Li et al. proposed a new three-party-authenticated key agreement protocol based on chaotic maps without storing a password table in a server. Compared with previou...
متن کاملThree Factor Authenticated Key Agreement Scheme for Telecare Medicine Information System Using Chebyshev Chaotic Maps
Telecare Medicine Information System (TMIS) is an effective technology in which patients can remain at their home and can get suggestions for medical treatment through the internet. One of the challenges faced by this system is security of medical data. Hence mutual authentication and session key establishment on a medical server between doctor and a patient are required for enhancing security ...
متن کاملSecure Chaotic Maps-based Group Key Agreement Scheme with Privacy Preserving
Nowadays chaos theory related to cryptography has been addressed widely, so there is an intuitive connection between group key agreement and chaotic maps. Such a connector may lead to a novel way to construct authenticated and efficient group key agreement protocols. Many chaotic maps based two-party/three-party password authenticated key agreement (2PAKA/3PAKA) schemes have been proposed. Howe...
متن کاملA Novel Client-to-Client Password-Authenticated Key Exchange Protocol Using Chaotic Maps in The Standard Model
Until now, the overwhelming majority of password-authenticated key agreement protocols using chaotic maps are based on three architectures (client/server, two clients/server and multi-server) and four security models (heuristic security, random oracle, ideal cipher and standard model). However, with rapid changes in the modern communication environment such as wireless mesh networks and cloud s...
متن کامل