Enhancing the Security of a "More Efficient & Secure Dynamic ID-Based Remote User Authentication Scheme'
Muhammad Khurram Khan
Abstract
Muhammad Khurram Khan
Abstract
Recently, Wang et al. proposed a dynamic ID-based remote user authentication scheme using smart cards. They claimed that their scheme preserves anonymity of a user, has the features of strong password chosen by the server, and protected from several attacks. However, in this paper, we point out that Wang et al.'s scheme has practical pitfalls and is not feasible for real-life implementation. We identify that their scheme: does not provide anonymity of a user during authentication, user has no choice in choosing his password, vulnerable to insider attack, no provision for revocation of lost or stolen smart card, and does provide session key agreement. To remedy these security flaws, we propose an enhanced authentication scheme, which covers all the identified weaknesses of Wang et al.'s scheme and is more secure and efficient for practical application environment.
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Recently, Wang et al. proposed a dynamic ID-based remote user authentication scheme using smart cards. They claimed that their scheme preserves anonymity of a user, has the features of strong password chosen by the server, and protected from several attacks. However, in this paper, we point out that Wang et al.'s scheme has practical pitfalls and is not feasible for real-life implementation. We identify that their scheme: does not provide anonymity of a user during authentication, user has no choice in choosing his password, vulnerable to insider attack, no provision for revocation of lost or stolen smart card, and does provide session key agreement. To remedy these security flaws, we propose an enhanced authentication scheme, which covers all the identified weaknesses of Wang et al.'s scheme and is more secure and efficient for practical application environment.
Key concepts: Computer science, Smart card, Password, Computer security, Scheme (mathematics), Anonymity, Session key, Authentication (law)