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Design and implementation of chaos based true random number generator on FPGA

机译:基于混沌的真随机数发生器的FPGA设计与实现

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Currently, chaotic signal generators is of importance in cryptographic applications and chaotic communication systems. One of the significant field of the chaotic signal oscillators are random number generators. In this paper, an FPGA-based new true random number generator system using discrete-time chaotic signal generator is presented. The system designed incorporates the Sprott 94 G chaotic system based on an FPGA deployed with IEEE 754 standard. In order to produce random bits a quantification process has been performed on the results produced by the chaotic oscillator unit. Furthermore, the XOR method has been determined as restoring function to obtain a true random bit generator. The maximum operating frequency of FPGA-based true random number generator has been able to reach up to 399,383 MHz. The 20,000-bit sequence has been generated by the designed system and they have been saved to the test result file. They have been tested using NIST test suite and FIPS-140-1 standards and successful results have been obtained. It is concluded that the FPGA-based system is able to be used in cryptologic applications.
机译:当前,混沌信号发生器在密码学应用和混沌通信系统中很重要。混沌信号振荡器的重要领域之一是随机数发生器。本文提出了一种使用离散时间混沌信号发生器的基于FPGA的新型真随机数发生器系统。设计的系统结合了基于IEEE 754标准部署的FPGA的Sprott 94 G混沌系统。为了产生随机位,已经对由混沌振荡器单元产生的结果执行了量化处理。此外,已将XOR方法确定为恢复功能,以获得真正的随机位发生器。基于FPGA的真正随机数发生器的最大工作频率已达到399,383 MHz。设计的系统已生成20,000位序列,并将它们保存到测试结果文件中。已使用NIST测试套件和FIPS-140-1标准对它们进行了测试,并获得了成功的结果。结论是,基于FPGA的系统能够用于密码应用程序中。

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