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A Robust Random Number Generator Based on a Differential Current-Mode Chaos

机译:基于差分电流模式混沌的鲁棒随机数发生器

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This paper demonstrates a differential current-mode chaos-based circuit used to generate random number sequences, which was implemented on 90-nm CMOS-SOI technology. The proposed design is more suitable for circuit implementation of a chaotic map, and diminishes non-idealities such as asymmetry, offset and low slope values. The differential design also exhibits superior robustness to supply voltage, temperature, and process variations. Behavioral and SPICE simulations are used to show the advantages of the differential chaos circuit in comparison to a single ended version. Furthermore, to validate that the circuit can serve as a white noise generator, a statistical random number generator test, as suggested by the Federal Information Processing Standard (FIPS), was conducted on the simulation results and verified on the hardware. The results of the test demonstrated that the circuit functions with very high robustness.
机译:本文演示了一种用于生成随机数序列的差分电流模式基于混沌的电路,该电路是在90nm CMOS-SOI技术上实现的。所提出的设计更适合于混沌映射的电路实现,并减少了非理想性,例如不对称性,偏移和低斜率值。差分设计还表现出对电源电压,温度和工艺变化的出色鲁棒性。行为仿真和SPICE仿真用于显示差分混沌电路与单端版本相比的优势。此外,为了验证该电路可以用作白噪声发生器,对仿真结果进行了联邦信息处理标准(FIPS)建议的统计随机数发生器测试,并在硬件上进行了验证。测试结果表明该电路具有很高的鲁棒性。

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