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Ultralightweight RFID Reader-Tag Mutual Authentication Revisited

机译:再造超轻型RFID读取器-标签相互认证

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The RFID (Radio Frequency Identification) technology plays an important role of providing mobile services in Internet of Things (IoT) environments. In an RFID (Radio Frequency Identification) system, a tag with a unique ID is attached to an object and a reader can recognize the object by identifying the attached tag. With this identified tag ID, the reader can then retrieve the related information of the object from the backend server database and even access IoT-aware services associated with the object. Due to the nature of RF signals, the communication between the reader and tags is vulnerable to attacks. Typical attacks include the man-in-the-middle (MitM), replay, forward secrecy, denial of service (DoS), and impersonation attacks. Due to the extremely small memory and very limited computation power of tags, some RFID reader-tag mutual authentication schemes, like Huang and Jiang's scheme, Yi et al.'s scheme and Khedr's scheme, have been proposed to resist these attacks by using on-tag ultra lightweight operations, such as the random number generation (RNG), the pseudo random number generator (PRNG), the cyclic redundancy check (CRC), the exclusive-or (XOR), and lightweight cryptographic hash function (LHash) operations. These schemes still have some flaws, though. This paper proposes an improved mutual authentication scheme using only ultra lightweight operations to resist more attacks and/or achieve lower communication, computation, and tag memory overheads.
机译:RFID(射频识别)技术在物联网(IoT)环境中提供移动服务方面扮演着重要角色。在RFID(射频识别)系统中,具有唯一ID的标签被附接到对象,并且读取器可以通过识别附接的标签来识别对象。借助此标识的标签ID,读取器随后可以从后端服务器数据库中检索对象的相关信息,甚至可以访问与该对象关联的IoT感知服务。由于RF信号的性质,读取器和标签之间的通信容易受到攻击。典型的攻击包括中间人(MitM),重播,转发保密,拒绝服务(DoS)和模拟攻击。由于标签的存储空间极小且计算能力非常有限,因此,人们提出了一些RFID读写器标签相互认证方案,例如Huang和Jiang的方案,Yi et al。的方案和Khedr的方案,以通过使用标签超轻量级操作,例如随机数生成(RNG),伪随机数生成器(PRNG),循环冗余校验(CRC),异或(XOR)和轻量级加密哈希函数(LHash)操作。但是,这些方案仍然存在一些缺陷。本文提出了一种改进的双向身份验证方案,该方案仅使用超轻量级操作来抵御更多攻击和/或实现更低的通信,计算和标签存储开销。

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