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Security Analysis of Ultra-lightweight Cryptographic Protocol for Low-cost RFID Tags: Gossamer Protocol

机译:低成本RFID标签超轻量级加密协议的安全分析:Gossamer协议

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Gossamer protocol has been recently published to achieve mutual authentication in low-cost RFID tags. This protocol is considered to fall in ultra-lightweight class as it incorporates simple and low cost operations. Most of the earlier proposals in this class were exposed soon after their publication. Common weaknesses included use of Triangular functions and improper use of logic operators. Gossamer protocol used two non-triangular functions a) ROTbits and b) MIXbits. These functions provide confusion and diffusion properties and are implemented as cheaper operations. Thus, this protocol can be used for EPCglobal Class-1 Generation-2 standard (considered as universal standard for low-cost tags). This protocol is able to overcome existing weaknesses and is considered to be more attractive for low-capability devices as compared to earlier protocols of this class. In this paper, we analyze the security features provided by Gossamer protocol. The vulnerabilities discovered during this analysis reveal that different attacks including denial of service, memory and computation exhaustive, de-synchronization, replay, attack on data integrity and IDS (index pseudonym) collision are possible. As a consequence, we propose a new mutual authentication protocol keeping in mind the constraints and making use of the existing operations without addition of any expensive one. The analysis of the proposed protocol shows that it is resistant to all the attacks possible in case of Gossamer protocol. A comparative security analysis shows that proposed protocol provides better security features with a small compromise of communication overheads. Two additional public messages are exchanged between the reader and the tag to address the vulnerabilities present in Gossamer protocol.
机译:最近发布了Gossamer协议,以实现低成本RFID标签中的相互身份验证。该协议被认为是含有简单和低成本操作的超轻量级等级。本课程中的大多数提案都在出版后即将曝光。常见的弱点包括使用三角功能和逻辑运算符的不当使用。 Gossamer协议使用了两个非三角形功能a)rotbits和b)Mixbits。这些功能提供了混淆和扩散特性,并实现为更便宜的操作。因此,该协议可用于EPCGlobal类-1生成-2标准(被认为是低成本标签的通用标准)。该协议能够克服现有的弱点,并且被认为与该类的早期协议相比,对低能力设备更具吸引力。在本文中,我们分析了Gossamer协议提供的安全功能。在此分析期间发现的漏洞显示,不同的攻击包括拒绝服务,内存和计算详尽,解除同步,重播,对数据完整性的攻击和ID(索引假名)碰撞是可能的。因此,我们提出了一种新的相互认证协议,牢记约束并利用现有操作而不添加任何昂贵的操作。提出协议的分析表明,在Gossamer协议的情况下,它可能抵抗所有可能的攻击。比较安全分析表明,提出的协议提供了更好的安全功能,具有较小的通信开销。在读取器和标签之间交换了两条额外的公共消息,以解决Gossamer协议中存在的漏洞。

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