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An Effencient Improvement of RFID Authentication Protocol Using Hash Function ZKP

机译:使用哈希函数ZKP的RFID身份验证协议的有效改进

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The applications of Radio Frequency Identification (RFID) technology has been rapidly developed to be used in different fields that require automatic identification of objects and managing information. The advantage of employing RFID systems is to facilitate automatic identification of objects from distance without any interaction with tagged objects and without using a line of sight as compared with barcode. However, security and privacy constitute a challenge to RFID system as RFID systems use the wireless communication. Many researchers have introduced elliptical curve cryptographic (ECC) solutions to the security and privacy in RFID system as an ideal cryptosystem to be implemented with RFID technology. However, most of these solutions do not have provide adequate protection. Moreover, in terms of integrity and confidentiality level, most of these authentication protocols still vulnerable to some of security and privacy attacks. Based on these facts, this paper proposes a mutual authentication protocol that aims at enhancing an existing RFID authentication protocol that suffers from tracking attack and man-in-the-middle attack (MITM). The enhancement is accomplished by improving the security and privacy level against MITM, tracking attack and other related attacks. The proposed protocol is dependent on use the elliptical curve version of Schnorr identification protocol in combination with Keccak hash function. This combination leads to enhance the confidentiality and integrity level of the RFID authentication system and increase the privacy protection.
机译:射频识别(RFID)技术的应用已得到快速发展,可用于需要自动识别对象和管理信息的不同领域。与条形码相比,采用RFID系统的优点是便于从远处自动识别物体,而无需与被标记物体进行任何交互,也无需使用视线。然而,由于RFID系统使用无线通信,因此安全性和保密性对RFID系统构成了挑战。许多研究人员已经将椭圆曲线密码(ECC)解决方案引入到RFID系统的安全性和私密性中,这是使用RFID技术实现的理想密码系统。但是,大多数这些解决方案都没有提供足够的保护。而且,就完整性和机密性而言,大多数身份验证协议仍然容易受到某些安全和隐私攻击的攻击。基于这些事实,本文提出了一种相互认证协议,旨在增强现有的遭受跟踪攻击和中间人攻击(MITM)的RFID认证协议。通过提高针对MITM的安全性和隐私级别,跟踪攻击和其他相关攻击,可以实现增强功能。拟议的协议取决于结合Keccak哈希函数使用Schnorr识别协议的椭圆曲线版本。这种结合可以提高RFID身份验证系统的机密性和完整性级别,并增强隐私保护。

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