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Hausdorff Distance Model-Based Identity Authentication for IP Circuits in Service-Centric Internet-of-Things Environment

机译:以服务为中心的物联网环境中基于Hausdorff距离模型的IP电路身份认证

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摘要

Rapid advances in the Internet-of-Things (IoT) have exposed the underlying hardware devices to security threats. As the major component of hardware devices, the integrated circuit (IC) chip also suffers the threat of illegal, malicious attacks. To protect against attacks and vulnerabilities of a chip, a credible authentication is of fundamental importance. In this paper, we propose a Hausdorff distance-based method to authenticate the identity of IC chips in IoT environments, where the structure is analyzed, and the lookup table (LUT) resources are treated as a set of reconfigurable nodes in field programmable gate array (FPGA)-based IC design. Unused LUT resources are selected for insertion of the copyright information by using the depth-first search algorithm, and the random positions are reordered with the Hausdorff distance matching function next, so these positions are mapped to satisfy the specific constraints of the optimal watermark positions. If the authentication process is activated, virtual positions are mapped to the initial key file, yet the identity of the IC designed can be authenticated using the mapping relationship of the Hausdorff distance function. Experimental results show that the proposed method achieves good randomness and secrecy in watermark embedding, as well the extra resource overhead caused by watermarks are promising.
机译:物联网(IoT)的快速发展使底层硬件设备面临安全威胁。作为硬件设备的主要组件,集成电路(IC)芯片还遭受非法恶意攻击的威胁。为了防止芯片的攻击和漏洞,可靠的身份验证至关重要。在本文中,我们提出了一种基于Hausdorff距离的方法来验证IoT环境中IC芯片的身份,在该结构中进行结构分析,并将查找表(LUT)资源视为现场可编程门阵列中的一组可重新配置节点基于(FPGA)的IC设计。通过使用深度优先搜索算法选择未使用的LUT资源以插入版权信息,然后使用Hausdorff距离匹配函数对随机位置进行重新排序,以便映射这些位置以满足最佳水印位置的特定约束。如果激活了身份验证过程,则将虚拟位置映射到初始密钥文件,但是可以使用Hausdorff距离函数的映射关系来对设计的IC的身份进行身份验证。实验结果表明,该方法在水印嵌入中具有良好的随机性和保密性,并且水印带来的额外资源开销是有希望的。

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