RFID Path Authentication, Revisited

RFID Path Authentication, Revisited
复制标题

DOI:
10.1109/aina.2014.150
复制
发表时间:
2014-05
期刊:
2014 IEEE 28th International Conference on Advanced Information Networking and Applications
影响因子:
--
通讯作者:
M. Mamun;A. Miyaji
M. Mamun;A. Miyaji
中科院分区:
其他
文献类型:
--
作者:
M. Mamun;A. Miyaji

文献摘要

相似文献

在支持RFID的供应链中,物品配备了RFID标签,基于标签的路径身份验证使目的地检查点能够验证标签已经访问的路线。在这项工作中,我们提出了一种新的,高效的,隐私保护的RFID使能的供应链路径认证系统。与现有的基于椭圆曲线Elgamal重新加密(ECElgamal)的解决方案相比,我们基于算术电路上的同态消息认证码(HomMAC)的解决方案提供更少的存储器存储(具有有限的可扩展性)并且对读取器没有计算要求。然而,与以前的计划,我们允许计算能力内的标签,同意一个新的隐私方向的路径隐私提出的蔡等人。在ACNS 012。此外,我们定制了一个基于多项式的身份验证方案(以阻止潜在的标签模拟和拒绝服务(DoS)攻击),使其适合我们的新的路径身份验证协议。
In an RFID-enabled supply chain, where items are outfitted with RFID tags, path authentication based on tag enables the destination checkpoints to validate the route that a tag has already accessed. In this work, we propose a novel, efficient, privacy-preserving path authentication system for RFID-enabled supply chains. Compared to existing Elliptic curve Elgamal Re-encryption (ECElgamal) based solution, our Homomorphic Message authentication Code on arithmetic circuit (HomMAC) based solution offers less memory storage (with limited scalability) and no computational requirement on the reader. However, unlike previous schemes, we allow computational ability inside the tag that consents a new privacy direction to path privacy proposed by Cai et al. in ACNS012. In addition, we customize a polynomial-based authentication scheme (to thwart potential tag impersonation and Denial of Service (DoS) attacks), so that it fits our new path authentication protocol.