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New RSA Encryption Mechanism Using One-Time Encryption Keys and Unpredictable Bio-Signal for Wireless Communication Devices

机译:新的RSA加密机制使用一次性加密密钥和无线通信设备的不可预测的生物信号

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摘要

Applying the data encryption method used in conventional personal computers (PC) to wireless communication devices such as IoT is not trivial. Because IoT equipment is extremely slow in transferring data and has a small hardware area compared with PCs, it is difficult to transfer large data and perform complicated operations. In particular, it is difficult to apply the RSA encryption method to wireless communication devices because it guarantees the stability of data encryption because it is difficult to factor extremely large prime numbers. Furthermore, it has become even more difficult to apply the RSA encryption method to IoT devices as a paper recently published indicated that it enables rapid fractional decomposition when using RSA encryption with a prime number generated through several pseudo-random number generators. To compensate for the disadvantages of RSA encryption, we propose a method that significantly reduces the encryption key using a true prime random number generator (TPRNG), which generates a prime number that cannot be predicted through bio-signals, and a disposable RSA encryption key. TPRNG has been verified by the National Institute of Standards and Technology. The NIST test and an RSA algorithm are implemented through Verilog.
机译:将传统个人计算机(PC)中使用的数据加密方法应用于诸如IOT的无线通信设备并不琐碎。由于IOT设备在传输数据中非常缓慢并且与PC相比具有小的硬件区域,因此难以传输大数据并执行复杂的操作。特别地,难以将RSA加密方法应用于无线通信设备,因为它保证了数据加密的稳定性,因为难以因子非常大的素数。此外,将RSA加密方法应用于IOT设备,作为最近公布的纸张已经表明,当使用通过多个​​伪随机数发生器产生的素数时,它能够快速分解。为了弥补RSA加密的缺点,我们提出了一种方法,该方法使用真正的主要随机数发生器(TPRNG)显着减少了加密密钥,该方法生成不能通过生物信号预测的素数,以及一次性RSA加密密钥。 TPRNG已由国家标准与技术研究所核实。 NIST测试和RSA算法通过Verilog实现。

著录项

  • 作者

    Hoyoung Yu; Youngmin Kim;

  • 作者单位
  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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