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An RFID-Based Smart Structure for the Supply Chain: Resilient Scanning Proofs and Ownership Transfer with Positive Secrecy Capacity Channels ?

机译:基于RFID的供应链智能结构:具有正保密容量通道的弹性扫描证明和所有权转移?

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The National Strategy for Global Supply Chain Security published in 2012 by the White House identifies two primary goals for strengthening global supply chains: first, to promote the efficient and secure movement of goods, and second to foster a resilient supply chain. The Internet of Things (IoT), and in particular Radio Frequency Identification (RFID) technology, can be used to realize these goals. For product identification, tracking and real-time awareness, RFID tags are attached to goods. As tagged goods move along the supply chain from the suppliers to the manufacturers, and then on to the retailers until eventually they reach the customers, two major security challenges can be identified: (I) to protect the shipment of goods that are controlled by potentially untrusted carriers; and (II) to secure the transfer of ownership at each stage of the chain. For the former, grouping proofs in which the tags of the scanned goods generate a proof of “simulatenous” presence can be employed, while for the latter, ownership transfer protocols (OTP) are used. This paper describes enhanced security solutions for both challenges. We first extend earlier work on grouping proofs and group codes to capture resilient group scanning with untrusted readers; then, we describe a modified version of a recently published OTP based on channels with positive secrecy capacity adapted to be implemented on common RFID systems in the supply chain. The proposed solutions take into account the limitations of low cost tags employed in the supply chain, which are only required to generate pseudorandom numbers and compute one-way hash functions.
机译:白宫于2012年发布的《全球供应链安全国家战略》确定了加强全球供应链的两个主要目标:第一,促进货物的有效和安全运输,第二,建立有弹性的供应链。物联网(IoT),尤其是射频识别(RFID)技术可用于实现这些目标。为了进行产品识别,跟踪和实时识别,将RFID标签粘贴到商品上。随着带标签的商品从供应商到制造商,再到零售商,直到最终到达客户,沿着供应链移动,可以识别出两个主要的安全挑战:(I)保护受潜在货主控制的商品的运输不可信的运营商; (II)确保在链的每个阶段的所有权转移。对于前者,可以使用分组证据,在该分组证据中,扫描货物的标签生成“类似”存在的证据,而对于后者,则使用所有权转移协议(OTP)。本文介绍了针对这两个挑战的增强型安全解决方案。我们首先扩展了先前对分组证明和分组代码的工作,以捕获不受信任的读者进行灵活的分组扫描。然后,我们根据具有正保密能力的渠道描述最近发布的OTP的修改版本,该渠道适合在供应链中的常见RFID系统上实施。所提出的解决方案考虑了供应链中使用的低成本标签的局限性,这些局限性只需要生成伪随机数并计算单向哈希函数即可。

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