A new Definition and Classification of Physical Unclonable Functions

R. Plaga, D. Merli
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引用次数: 7

Abstract

A new definition of "Physical Unclonable Functions" (PUFs), the first one that fully captures its intuitive idea among experts, is presented. A PUF is an information-storage system with a security mechanism that is 1. meant to impede the duplication of a precisely described storage-functionality in another, separate system and 2. remains effective against an attacker with temporary access to the whole original system. A novel classification scheme of the security objectives and mechanisms of PUFs is proposed and its usefulness to aid future research and security evaluation is demonstrated. One class of PUF security mechanisms that prevents an attacker to apply all addresses at which secrets are stored in the information-storage system, is shown to be closely analogous to cryptographic encryption. Its development marks the dawn of a new fundamental primitive of hardware-security engineering: cryptostorage. These results firmly establish PUFs as a fundamental concept of hardware security.
物理不可克隆函数的新定义与分类
提出了“物理不可克隆函数”(Physical unclable Functions, PUFs)的新定义,这是第一个在专家中完全抓住其直观概念的定义。PUF是一种信息存储系统,其安全机制为1。旨在阻止精确描述的存储功能在另一个单独的系统中重复。对于临时访问整个原始系统的攻击者仍然有效。提出了一种新的puf安全目标和机制的分类方案,并论证了其对未来研究和安全评估的有用性。有一类PUF安全机制可以防止攻击者应用信息存储系统中存储秘密的所有地址,这种机制与密码学加密非常相似。它的发展标志着硬件安全工程的一个新的基本原始的曙光:加密存储。这些结果牢固地确立了puf作为硬件安全基本概念的地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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