smart card based remote user authentication scheme In this article a multi-server remote user authentication scheme is proposed. Here the users and servers have to register to some authorized registration centre (RC). User is required to provide its ID, password and biometric to fulfil registration and a smart card is issued. Smith was Auburn's head coach from 1978 to 1989, leading the Tigers to five straight NCAA Tournament berths between 1984 and 1988, the most in school history. . 1976 .
0 · Smart Card Based Remote User Authentication Scheme in Multi
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Smart Card Based Remote User Authentication Scheme in Multi
In this article a multi-server remote user authentication scheme is proposed. Here the users and servers have to register to some authorized registration centre (RC). User is required to provide its ID, password and biometric to fulfil registration and a smart card is issued.
Our scheme is aimed at logically securing the data stored in the smart card and improving the dynamic property of the ID using password randomization for each session. Our . In this article a multi-server remote user authentication scheme is proposed. Here the users and servers have to register to some authorized registration centre (RC). User is required to provide its ID, password and biometric to fulfil registration and a smart card is issued. Our scheme is aimed at logically securing the data stored in the smart card and improving the dynamic property of the ID using password randomization for each session. Our scheme resists forgery attack, replay attack, stolen smart-card attack, offline password guessing attack, and spoofing attack.
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Secure and Efficient Smart
User authentication based on smart card provides multi-factor authentication as a user who wants to successfully login requires to have a valid smart card and a password. The smart card is a portable tamper proof plastic card which has low cost and inbuilt memory.
In this paper, we propose a modified smart card based remote user password authentication scheme to overcome the aforementioned weaknesses. The analysis shows that our proposed scheme is user friendly and more secure than other related schemes. open access. In recent years, a new technology has come into picturefor remote user authentication (RUA) in which the remote server verifies the legitimacy and authenticity of a user over an insecure communication channel using biometrics. Organizations often use smart card-based user authentication for remote access. The research community has put forward dynamic identity based remote user authentication schemes for distributed multi-server environment to safeguard the . Smart-card-based remote user password authentication schemes are commonly used for providing authorized users a secure method for remotely accessing resources over insecure networks. In 2009, Xu et al. proposed a smart-card .
In this paper, an efficient authentication scheme using the smart card in the cloud environment is proposed. In the proposed scheme, with the help of a single private key, the user can access many cloud services. Also, the proposed scheme resists all security attacks.
In this section, for a detailed investigation we review Shunmuganathan et al.’s remote user authentication scheme for multi-server environment based on dynamic ID using smart cards. In Shunmuganathan et al.’s scheme, we have three participants: the user ( \(U_i\) ), the server ( \(S_j\) ), and the registration center ( RC ). Recently, Qiu et al. proposed an efficient smart card based remote user authentication scheme for the multi-server environment, in which they uphold their scheme provides mutual authentication and key agreement, . In this article a multi-server remote user authentication scheme is proposed. Here the users and servers have to register to some authorized registration centre (RC). User is required to provide its ID, password and biometric to fulfil registration and a smart card is issued.
Our scheme is aimed at logically securing the data stored in the smart card and improving the dynamic property of the ID using password randomization for each session. Our scheme resists forgery attack, replay attack, stolen smart-card attack, offline password guessing attack, and spoofing attack. User authentication based on smart card provides multi-factor authentication as a user who wants to successfully login requires to have a valid smart card and a password. The smart card is a portable tamper proof plastic card which has low cost and inbuilt memory. In this paper, we propose a modified smart card based remote user password authentication scheme to overcome the aforementioned weaknesses. The analysis shows that our proposed scheme is user friendly and more secure than other related schemes.
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open access. In recent years, a new technology has come into picturefor remote user authentication (RUA) in which the remote server verifies the legitimacy and authenticity of a user over an insecure communication channel using biometrics.
Organizations often use smart card-based user authentication for remote access. The research community has put forward dynamic identity based remote user authentication schemes for distributed multi-server environment to safeguard the .
Smart-card-based remote user password authentication schemes are commonly used for providing authorized users a secure method for remotely accessing resources over insecure networks. In 2009, Xu et al. proposed a smart-card .
In this paper, an efficient authentication scheme using the smart card in the cloud environment is proposed. In the proposed scheme, with the help of a single private key, the user can access many cloud services. Also, the proposed scheme resists all security attacks. In this section, for a detailed investigation we review Shunmuganathan et al.’s remote user authentication scheme for multi-server environment based on dynamic ID using smart cards. In Shunmuganathan et al.’s scheme, we have three participants: the user ( \(U_i\) ), the server ( \(S_j\) ), and the registration center ( RC ).
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smart card based remote user authentication scheme|Secure and Efficient Smart