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A Way of Generating True Random Number Based on FPGA and Gate Circuit Multi-vibrator

机译:一种基于FPGA和栅极电路多振动器产生真正随机数的方法

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Random character is one of the most important characters of nuclear radiation, so random number is widely used in nuclear simulation and research. Random numbers are usually generated through some algorithms, so these kinds of random numbers are usually not true random ones. Moreover, the algorithms will consume a great deal of hardware resource and runtime of the signal processing system. To solve this problem, in this paper, a way of generating true random numbers based on FPGA and gate circuit multi-vibrator is put forward ingeniously. If the environment or the component parameters are unstable, the period and pulse width of vibrating pulse will be unstable. If this unstable vibration is used, random number can be generated. This way of random number generating is based on circuit instability caused of threshold errors, electronic noise and interference other than algorithm, so it consumes less hardware resource and the numbers are true random. The principle and the experiment result are analyzed. According to the analysis and experiment, a conclusion is drawn that the way of generating random number is feasible.
机译:随机性是核辐射最重要的特征之一,因此随机数被广泛用于核模拟和研究。随机数通常通过一些算法生成,因此这些类型的随机数通常不是真正的随机数。此外,算法将消耗大量的信号处理系统的硬件资源和运行时。为了解决这个问题,本文巧妙地提出了一种基于FPGA和栅极电路多振动器产生真正随机数的方式。如果环境或组件参数不稳定,则振动脉冲的周期和脉冲宽度将是不稳定的。如果使用这种不稳定的振动,则可以生成随机数。这种随机数生成方式基于电路不稳定性导致阈值误差,电子噪声和除算法之外的干扰,因此它消耗了较少的硬件资源,并且数字是真正随机的。分析了原理和实验结果。根据分析和实验,得出了一种结论,即产生随机数的方式是可行的。

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