remote user authentication using smart cards Like many other smart card-based authentication methods, the three schemes involve a set of users and a single server. Users access the resources by mutual authentication with server. The authentication usually includes four basic phases: registration, login, authentication, and password change. NFC devices for easily reading and writing (encoding) NFC Tags and Smart Cards using a PC, a Mac, a tablet or a smartphone. External NFC readers can be connected via USB, Bluetooth, or Ethernet to trasmit data to devices.
0 · Smart Card and Remote Desktop Services
1 · Key binding biometrics‐based remote user authentication
2 · A Review on Remote User Authentication Schemes Using Smart
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In a Remote Desktop scenario, a user is using a remote server for running services, and the smart card is local to the computer that the user is using. In a smart . See more
This paper combines biometrics, cryptography, and storage on smart card to design a new and secure biometric-based remote user authentication scheme using smart cards. .Remote Desktop Services enables users to sign in with a smart card by entering a PIN on the RDC client computer and sending it to the RD Session Host server in a manner similar to authentication that is based on user name and password. This paper combines biometrics, cryptography, and storage on smart card to design a new and secure biometric-based remote user authentication scheme using smart cards. First, the cryptographic key is generated as string of random bits. Like many other smart card-based authentication methods, the three schemes involve a set of users and a single server. Users access the resources by mutual authentication with server. The authentication usually includes four basic phases: registration, login, authentication, and password change.
Remote user authentication is an efficient technique to perform secure communication over an insecure network.In this current research article, a lightweight remote user authentication scheme using smart card is proposed. The proposed scheme is a multi-server authentication mechanism where user biometric plays a prominent role.
Remote user authentication is a mechanism in which the remote server verifies the legitimacy of a user over an insecure communication channel. Password based authentication schemes have been widely deployed to verify the legitimacy of remote users as password. In this paper, we aim to propose a new robust and effective password-based remote user authentication scheme using smart card. Our scheme is efficient, because our scheme uses only efficient one-way hash function and bitwise XOR operations.
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Smart Card and Remote Desktop Services
Password authentication based on smart cards is one of the simplest and most efficient authentication methods and is commonly deployed to authenticate the legitimacy of remote users. Based on cryptographic techniques, several password authentication schemes have previously been implemented. Remote user authentication is a mechanism to authenticate remote users over insecure communication network. User authentication is a central component of any security infrastructure. Other security measures depend upon verifying the identity of the sender and receiver of information. Authorization grants privileges based upon identity. During the last decade, numerous remote user authentication schemes based on dynamic ID have been proposed for the multi-server environment using smart cards. Recently, Shunmuganathan et al. pointed out that Li et al.’s scheme is defenseless in resisting the password guessing attack, stolen smart card attack and forgery attack. In this paper, we propose an efficient biometric-based remote user authentication scheme using smart cards, in which the computation cost is relatively low compared with other related schemes. The security of the proposed scheme is based on the one-way hash function, biometrics verification and smart card. Moreover, the proposed scheme enables .
Remote Desktop Services enables users to sign in with a smart card by entering a PIN on the RDC client computer and sending it to the RD Session Host server in a manner similar to authentication that is based on user name and password. This paper combines biometrics, cryptography, and storage on smart card to design a new and secure biometric-based remote user authentication scheme using smart cards. First, the cryptographic key is generated as string of random bits.
Like many other smart card-based authentication methods, the three schemes involve a set of users and a single server. Users access the resources by mutual authentication with server. The authentication usually includes four basic phases: registration, login, authentication, and password change. Remote user authentication is an efficient technique to perform secure communication over an insecure network.In this current research article, a lightweight remote user authentication scheme using smart card is proposed. The proposed scheme is a multi-server authentication mechanism where user biometric plays a prominent role.
Remote user authentication is a mechanism in which the remote server verifies the legitimacy of a user over an insecure communication channel. Password based authentication schemes have been widely deployed to verify the legitimacy of remote users as password. In this paper, we aim to propose a new robust and effective password-based remote user authentication scheme using smart card. Our scheme is efficient, because our scheme uses only efficient one-way hash function and bitwise XOR operations.
Password authentication based on smart cards is one of the simplest and most efficient authentication methods and is commonly deployed to authenticate the legitimacy of remote users. Based on cryptographic techniques, several password authentication schemes have previously been implemented. Remote user authentication is a mechanism to authenticate remote users over insecure communication network. User authentication is a central component of any security infrastructure. Other security measures depend upon verifying the identity of the sender and receiver of information. Authorization grants privileges based upon identity. During the last decade, numerous remote user authentication schemes based on dynamic ID have been proposed for the multi-server environment using smart cards. Recently, Shunmuganathan et al. pointed out that Li et al.’s scheme is defenseless in resisting the password guessing attack, stolen smart card attack and forgery attack.
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Key binding biometrics‐based remote user authentication
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A Review on Remote User Authentication Schemes Using Smart
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remote user authentication using smart cards|Key binding biometrics‐based remote user authentication