Securing IoT Devices Using Robust DRAM PUFs

N. Anagnostopoulos, T. Arul, Yufan Fan, C. Hatzfeld, J. Lotichius, Ratika Sharma, Felipe Fernandes, Fatemeh Tehranipoor, S. Katzenbeisser
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引用次数: 15

Abstract

In this work, we present a novel way in which DRAM modules, which are found inherently in many IoT devices, can be used to enhance the security of such devices. We test the robustness of two DRAM-based security primitives, namely DRAM retention-based PUFs and Row Hammer PUFs, to two external factors, i.e., ambient temperature and voltage variations. As both types of PUFs are proven to be highly dependent on temperature, we, then, present and discuss ways in which such PUFs can be used to implement cryptographic applications in a robust way, no longer being affected by temperature variations. Finally, we also present a proof-of-concept robust DRAM PUF-based cryptographic protocol that can be adapted for different security applications. In this way, our work demonstrates a cost-efficient, lightweight and practical manner in which even low-end, resource-constrained IoT devices can be easily protected.
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使用稳健的DRAM puf保护物联网设备
在这项工作中,我们提出了一种新颖的方法,可以使用许多物联网设备中固有的DRAM模块来增强此类设备的安全性。我们测试了两种基于DRAM的安全原语(即基于DRAM保留的puf和Row Hammer puf)对两个外部因素(即环境温度和电压变化)的鲁棒性。由于这两种类型的puf都被证明高度依赖于温度,因此,我们提出并讨论了如何使用这些puf以稳健的方式实现加密应用程序,而不再受温度变化的影响。最后,我们还提出了一个概念验证的健壮的基于DRAM puf的加密协议,可以适应不同的安全应用。通过这种方式,我们的工作展示了一种经济高效,轻量级和实用的方式,即使是低端,资源受限的物联网设备也可以轻松保护。
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