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Correlation-Based Cryptanalysis of a Ring Oscillator Based Random Number Generator

机译:基于环形振荡器随机数发生器的相关基上密码分析

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Random Number Generators (RNGs) are crucial for many security applications for generating unpredictable bit streams. Fully digital Random Number Generators which are implemented in FPGA platforms are usually preferred for their high-speed availability and their ease of integration to digital platforms. On the other hand, attention should be paid while placing and routing ring oscillators as much as possible. This paper presents an implementation of a Random Number Generator based on ring oscillators on FPGA and the cryptanalysis of it via correlation analysis. The main aim of this paper is to analyze the correlation between the output bit streams produced by the RNG and the attack circuit coupled to the main circuit. In the main RNG circuit, all ring oscillators are placed far from each other to obtain independent random bit streams at the output. Experimental results show that the effective correlation between RNG and attack circuit can be obtained due to coupling.
机译:随机数生成器(RNG)对于许多安全应用程序来生成不可预测的位流至关重要。在FPGA平台中实现的完全数字随机数发生器通常优先于其高速可用性及其与数字平台集成的便利。另一方面,应尽可能地放置和路由环振荡器时支付注意。本文通过相关分析,基于FPGA的环形振荡器和IT密码分析的基于环振荡器的随机数发生器的实现。本文的主要目的是分析由RNG产生的输出比特流与耦合到主电路的攻击电路之间的相关性。在主RNG电路中,所有环形振荡器均彼此远离,以在输出处获得独立的随机比特流。实验结果表明,由于耦合,可以获得RNG和攻击电路之间的有效相关性。

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