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PUFSec: Protecting physical unclonable functions using hardware isolation-based system security techniques

机译:PUFSEC:使用基于硬件隔离的系统安全技术保护物理不可渗透功能

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This paper aims to address the security challenges on physical unclonable functions (PUFs) raised by modeling attacks and denial of service (DoS) attacks. We develop a hardware isolation-based secure architecture extension, namely PUFSec, to protect the target PUF from security compromises without modifying the internal PUF design. PUFSec achieves the security protection by physically isolating the PUF hardware and data from the attack surfaces accessible by the adversaries. Furthermore, we deploy strictly enforced security policies within PUFSec, which authenticate the incoming PUF challenges and prevent attackers from collecting sufficient PUF responses to issue modeling attacks or interfering with the PUF workflow to launch DoS attacks. We implement our PUFSec framework on a Xilinx SoC equipped with ARM processor. Our experimental results on the real hardware prove the enhanced security and the low performance and power overhead brought by PUFSec.
机译:本文旨在解决通过建模攻击和拒绝服务(DOS)攻击而提出的物理不可统一功能(PUFS)的安全挑战。我们开发了基于硬件隔离的安全架构扩展,即PUFSEC,以保护目标PUF免受安全妥协,而无需修改内部PUF设计。 PUFSEC通过物理隔离PUF硬件和来自对手可访问的攻击表面的数据来实现安全保护。此外,我们在Pufsec中部署严格强制强制执行安全策略,该策略验证了传入的PUF挑战,并防止攻击者收集足够的PUF响应,以发出建模攻击或干扰PUF工作流程以启动DOS攻击。我们在配备臂处理器的Xilinx SoC上实现我们的PUFSEC框架。我们对真实硬件的实验结果证明了Pufsec带来的增强的安全性和低性能和功率开销。

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