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Efficient design of Oscillator based Physical Unclonable Functions on Flash FPGAs

机译:闪光FPGA上基于振荡器的振荡器的物理不可渗透功能的高效设计

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With the scaling down of electronic devices and the boom of wireless communications, more and more smart devices are interconnected in what we call the Internet of Things. Connecting devices of everyday use can greatly improve our comfort, but it can also introduce unprecedented security problems. With billions of devices connected there is a huge risk of unauthorized use. In this context, Physical Unclonable Functions (PUFs) are a promising solution since they extract device intrinsic fingerprint that can be used for hardware identification and authentication. Here we present the first fully functional implementation of Oscillator based PUFs on Flash based FPGA. The implementation is presented for the Ring Oscillator based PUF and the Transient Effect Ring Oscillatory based PUF. After explaining those two PUF principles, we give all the necessary design practices to follow to obtain an efficient PUF implementation on Flash FPGA. Finally, we present the characterization of the PUFs and compare it to previous work. To the best of our knowledge, it is the first work which deals with the implementation of Oscillator based PUF on Flash FPGAs. Moreover, all design files are available online to ensure repeatability.
机译:随着电子设备的缩放和无线通信的繁荣,越来越多的智能设备在我们称之为互联网上互连。每天使用的连接设备可以大大提高我们的舒适度,但它也可以介绍前所未有的安全问题。随着数十亿个设备,有巨大的未经授权使用风险。在这种情况下,物理不可渗透功能(PUF)是有希望的解决方案,因为它们提取可用于硬件识别和认证的设备内部指纹。在这里,我们在基于闪存的FPGA上介绍了基于振荡器的PUF的第一个功能性实现。基于环形振荡器的PUF和瞬态效果环振荡的PUF提出了实现。在解释这两个PUF原则之后,我们提供了所有必要的设计实践,以便在Flash FPGA上获得有效的PUF实现。最后,我们展示了PUF的特征,并将其与以前的工作进行比较。据我们所知,它是第一个处理在闪存FPGA上基于振荡器的PUF的实现的工作。此外,所有设计文件都可以在线提供,以确保可重复性。

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