secure symmetric authentication for rfid tags report Targeting RFID tag with short tag ID, we employ a resource friendly symmetric encryption scheme, which is a stream cipher building block to enhance the security features in . RC-S380/S is compliant with radio law in the following countries and areas: USA / Canada / EU / UK / Korea / Hong Kong / Vietnam / Thailand / Malaysia / Singapore / Philippines / . See more
0 · Strong Authentication for RFID Systems Using the AES
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Product Description. The ACR1252U USB NFC Reader III is an NFC Forum-certified PC-linked reader, developed based on 13.56Mhz contactless .
The project ART proposes to enhance passive RFID (Radio Frequency Identification) tags with cryptographically secure authentication.
Targeting RFID tag with short tag ID, we employ a resource friendly symmetric encryption scheme, which is a stream cipher building block to enhance the security features in .Starting with a short introduction into common RFD systems, we present a motivation why secure authentication with standardized symmetric crypto algorithms for RFID tags is necessary for . However, the RFID techniques are plagued to security and privacy issues due to underlying wireless communication channel. In order to come up with a solution, we propose .
Recently, many solutions were proposed to secure RFID systems and many such systems are based on only lightweight primitives, including symmetric encryption, hash . In an RFID system, mutual authentication is considered one of the primary security requirements that should be accomplished between tag and server over a secure .Authentication for Long-range RFID Technology. Feldhofer, M., Dominikus, S. & Aigner, M. J. 1/09/03 → 31/08/05. Project: Research project Semantic Scholar extracted view of "Secure Symmetric Authentication for RFID Tags" by Anuj Kumar et al.
In this paper, we demonstrate how the project ART (Authentication for long-range RFID systems) proposes to improve current RFID systems by providing secure authentication. The project is performed by four independent partners, two from industry and two academic partners.The project ART proposes to enhance passive RFID (Radio Frequency Identification) tags with cryptographically secure authentication. Targeting RFID tag with short tag ID, we employ a resource friendly symmetric encryption scheme, which is a stream cipher building block to enhance the security features in active type RFID.
Starting with a short introduction into common RFD systems, we present a motivation why secure authentication with standardized symmetric crypto algorithms for RFID tags is necessary for many applications. We demonstrate vulnerabilities of current RFID systems and explain how application of an authentication mechanism can solve them.In contrast to the RFID community, which claims that cryptographic components are too costly for RFID tags, we describe a so-lution using strong symmetric authentication which is suitable for today’s requirements regarding low power consumption and low die-size. However, the RFID techniques are plagued to security and privacy issues due to underlying wireless communication channel. In order to come up with a solution, we propose an efficient authentication scheme which uses pseudorandom number generators (PRNG) and some simple cryptographic operations. Recently, many solutions were proposed to secure RFID systems and many such systems are based on only lightweight primitives, including symmetric encryption, hash functions, and exclusive OR operation.
In an RFID system, mutual authentication is considered one of the primary security requirements that should be accomplished between tag and server over a secure communication channel. RFID authentication schemes must always be secure, efficient, and robust against well-known malicious security attacks [26] .
Authentication for Long-range RFID Technology. Feldhofer, M., Dominikus, S. & Aigner, M. J. 1/09/03 → 31/08/05. Project: Research project Semantic Scholar extracted view of "Secure Symmetric Authentication for RFID Tags" by Anuj Kumar et al.In this paper, we demonstrate how the project ART (Authentication for long-range RFID systems) proposes to improve current RFID systems by providing secure authentication. The project is performed by four independent partners, two from industry and two academic partners.
Strong Authentication for RFID Systems Using the AES
The project ART proposes to enhance passive RFID (Radio Frequency Identification) tags with cryptographically secure authentication. Targeting RFID tag with short tag ID, we employ a resource friendly symmetric encryption scheme, which is a stream cipher building block to enhance the security features in active type RFID.
Starting with a short introduction into common RFD systems, we present a motivation why secure authentication with standardized symmetric crypto algorithms for RFID tags is necessary for many applications. We demonstrate vulnerabilities of current RFID systems and explain how application of an authentication mechanism can solve them.
In contrast to the RFID community, which claims that cryptographic components are too costly for RFID tags, we describe a so-lution using strong symmetric authentication which is suitable for today’s requirements regarding low power consumption and low die-size. However, the RFID techniques are plagued to security and privacy issues due to underlying wireless communication channel. In order to come up with a solution, we propose an efficient authentication scheme which uses pseudorandom number generators (PRNG) and some simple cryptographic operations. Recently, many solutions were proposed to secure RFID systems and many such systems are based on only lightweight primitives, including symmetric encryption, hash functions, and exclusive OR operation.
In an RFID system, mutual authentication is considered one of the primary security requirements that should be accomplished between tag and server over a secure communication channel. RFID authentication schemes must always be secure, efficient, and robust against well-known malicious security attacks [26] .Authentication for Long-range RFID Technology. Feldhofer, M., Dominikus, S. & Aigner, M. J. 1/09/03 → 31/08/05. Project: Research project
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