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New Pseudo-Random Number Generator for EPC Gen2

机译:EPC Gen2的新伪随机数发生器

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摘要

RFID enable applications are ubiquitous in our society, especially become more and more important as IoT management rises. Meanwhile, the concern of security and privacy of RFID is also increasing. The pseudorandom number generator is one of the core primitives to implement RFID security. Therefore, it is necessary to design and implement a secure and robust pseudo-random number generator (PRNG) for current RFID tag. In this paper, we study the security of light-weight PRNGs for EPC Gen2 RFID tag which is an EPC Global standard. For this reason, we have analyzed and improved the existing research at IEEE TrustCom 2017 and proposed a model using external random numbers. However, because the previous model uses external random numbers, the speed has a problem depending on the generation speed of external random numbers. In order to solve this problem, we developed a pseudorandom number generator that does not use external random numbers. This model consists of LFSR, NLFSR and SLFSR. Safety is achieved by using nonlinear processing such as multiplication and logical multiplication on the Galois field. The cycle achieves a cycle longer than the key length by effectively combining a plurality of LFSR and the like. We show that our proposal PRNG has good randomness and passed the NIST randomness test. We also shows that it is resistant to identification attacks and GD attacks.
机译:RFID启用应用程序在我们的社会中普遍存在,特别是随着物联网管理层越来越重要。同时,RFID的安全和隐私的关注也在增加。伪随机数生成器是实现RFID安全性的核心原语之一。因此,需要为电流RFID标签设计和实现安全且鲁棒的伪随机数发生器(PRNG)。在本文中,我们研究了EPC Gen2 RFID标签的轻量级PRNG的安全性,这是EPC全球标准。出于这个原因,我们已经分析并改进了IEEE TrustCom 2017的现有研究,并使用外部随机数提出了模型。但是,由于先前的模型使用外部随机数,因此速度取决于外部随机数的产生速度。为了解决这个问题,我们开发了一个不使用外部随机数的伪随机数发生器。该模型由LFSR,NLFSR和SLFSR组成。通过使用非线性处理实现的安全性,例如Galois场上的乘法和逻辑乘法。通过有效地组合多个LFSR等,该循环通过有效地组合多个LFSR等来实现比键长度长的周期。我们表明我们的提案PRNG具有良好的随机性并通过了NIST随机性测试。我们还表明,它抵抗识别攻击和GD攻击。

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