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A Spatial Majority Voting Technique to Reduce Error Rate of Physically Unclonable Functions

机译:空间多数表决技术可减少物理上无法克隆的函数的错误率

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The Physically Unclonable Function (PUF) is a promising hardware security primitive with a wide range of applications, such as secure key generation, device authentication, IP protection, and hardware entangled cryptography. Due to their physical construction, PUF responses are inherently noisy. Error correction codes can be used to turn noisy PUF responses into keys or static values for these applications. However, a general construction of error correction is expensive and could introduce high entropy loss for PUFs with high error rates. Some PUF pre-processing techniques have been proposed, such as temporal majority voting and dark bit schemes, applied before error correction. In this paper, we introduce a simple and yet effective method to reduce PUF error rate called Spatial Majority Voting (SMV). The idea is to group PUF bits together to produce a single, more stable bit from the group. Experimental data show that SMV works very well, reducing the mean error rate from 6.5% to 0.3% with a group size of 9 on SRAM PUFs implemented in 65 nm CMOS. We also show that SMV can be combined with the dark bits method to further reduce the error rate to less than 0.01%, thus avoiding the need for expensive error correction schemes.
机译:物理上不可克隆的功能(PUF)是一种有前途的硬件安全原语,具有广泛的应用程序,例如安全密钥生成,设备身份验证,IP保护和硬件纠缠加密。由于其物理结构,PUF响应本来就是嘈杂的。纠错码可用于将嘈杂的PUF响应转换为这些应用程序的键或静态值。然而,纠错的一般构造是昂贵的,并且可能为具有高错误率的PUF引入高熵损失。已经提出了一些在错误校正之前应用的PUF预处理技术,例如时间多数投票和暗比特方案。在本文中,我们介绍了一种简单有效的降低PUF错误率的方法,称为空间多数投票(SMV)。想法是将PUF位组合在一起,以从该组中产生单个更稳定的位。实验数据表明,在65 nm CMOS上实现的SRAM PUF上,SMV的效果非常好,将平均错误率从6.5%降低到0.3%,并且组大小为9。我们还表明,SMV可以与暗比特方法结合使用,以将错误率进一步降低至小于0.01%,从而避免了使用昂贵的纠错方案的需要。

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