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Secure authentication scheme for passive C1G2 RFID tags

机译:无源C1G2 RFID标签的安全认证方案

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Privacy and security concerns inhibit the fast adaption of RFID technology for many applications. A number of authentication protocols that address these concerns have been proposed but real-world solutions that are secure, maintain low communication cost and can be integrated into the ubiquitous EPCglobal Class 1 Generation 2 tag protocol (C1G2) are still needed and being investigated. We present a novel authentication protocol, which offers a high level of security through the combination of a random key scheme with a strong cryptography. The protocol is applicable to resource, power and computationally constraint platforms such as RFID tags. Our investigation shows that it can provide mutual authentication, untraceability, forward and backward security as well as resistance to replay, denial-of-service and man-in-the-middle attacks, while retaining a competitive communication cost. The protocol has been integrated into the EPCglobal C1G2 tag protocol, which assures low implementation cost. We also present a successful implementation of our protocol on real-world components such as the INTEL WISP UHF RFID tag and a C1G2 compliant reader.
机译:隐私和安全问题阻碍了RFID技术快速应用于许多应用。已经提出了许多解决这些问题的身份验证协议,但是仍需要并且正在研究安全可靠,保持低通信成本并且可以集成到无处不在的EPCglobal 1类第二代标签协议(C1G2)的实际解决方案。我们提出了一种新颖的身份验证协议,该协议通过将随机密钥方案与强大的加密技术相结合来提供高级别的安全性。该协议适用于资源,功率和计算约束平台,例如RFID标签。我们的调查表明,它可以提供相互身份验证,不可追溯性,前向和后向安全性,以及对重放,拒绝服务和中间人攻击的抵抗力,同时保持有竞争力的通信成本。该协议已集成到EPCglobal C1G2标签协议中,从而确保了较低的实施成本。我们还介绍了我们的协议在实际组件(例如INTEL WISP UHF RFID标签和符合C1G2的读取器)上的成功实施。

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