利用辅助数据压缩提高puf的综合征编码效率

Matthias Hiller, G. Sigl
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引用次数: 20

摘要

物理不可克隆函数(puf)为没有安全存储的资源受限嵌入式系统提供了安全的加密密钥。PUF测量内部制造变化,在设备内部创造一个独特但嘈杂的秘密。综合征编码方案创建并存储关于特定PUF结构的辅助数据,以纠正后续PUF测量中的错误并生成可靠的密钥。这个助手数据可以包含冗余。我们分析了现有的方案,并表明数据压缩可以用于减少现有实现的辅助数据的大小。我们介绍了压缩差分序列编码(DSC),这是迄今为止已知的最有效的综合征编码方案,用于流行的参考场景。将辅助数据压缩添加到DSC算法中,与参考场景中的其他算法相比,辅助数据大小总体上减少了68%。这是在不增加PUF位的数量和逻辑大小的最小增加的情况下实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increasing the efficiency of syndrome coding for PUFs with helper data compression
Physical Unclonable Functions (PUFs) provide secure cryptographic keys for resource constrained embedded systems without secure storage. A PUF measures internal manufacturing variations to create a unique, but noisy secret inside a device. Syndrome coding schemes create and store helper data about the structure of a specific PUF to correct errors within subsequent PUF measurements and generate a reliable key. This helper data can contain redundancy. We analyze existing schemes and show that data compression can be applied to decrease the size of the helper data of existing implementations. We introduce compressed Differential Sequence Coding (DSC), which is the most efficient syndrome coding scheme known to date for a popular reference scenario. Adding helper data compression to the DSC algorithm leads to an overall decrease of 68% in helper data size compared to other algorithms in a reference scenario. This is achieved without increasing the number of PUF bits and a minimal increase in logic size.
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