Application of stochastic programming method for analysis of semiconductor noise signal generators

G. Shuklin
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Abstract

In this work it is proposed to use the method of stochastic programming to obtain the values of key parameters of electronic components of electrical circuits, which are used to prevent leakage of confidential information due to electromagnetic radiation. The essence of the application of this method is to determine the optimal value of the power of the output noise-like signal generated by the noise generator, which provides the highest quality of interference aimed at suppressing a dangerous signal, the leakage of which is possible due to the side electromagnetic radiation at the object of information activity. The purpose of the article is to determine the condition of optimal generation of noise-like signals of semiconductor elements with specified characteristics and to optimize the maximum output power of the noise signal. Results: The article shows the use of linear and stochastic programming methods to estimate the required parameters of the noise generator by the criterion of the maximum output power of the noise signal at the load resistance. Conclusions: the conducted stochastic optimization showed the relationship of the output random variable from the initial conditions imposed on the semiconductor element, and allowed to obtain fixed optimal values of the load resistance parameters for a given optimization criterion. If we impose an additional condition of a given accuracy on the solution of this problem, we can significantly improve the quality of control of the parameters of the noise semiconductor element. Further research can be directed to determine the distribution of a random noise signal at the output of the device to counteract information leakage through the channel of side electromagnetic radiation and interference, that is, at the output of the power amplifier of the generator-jammer, to which the antenna is connected.
随机规划方法在半导体噪声信号发生器分析中的应用
本文提出采用随机规划的方法获取电路电子元件的关键参数值,用于防止电磁辐射导致机密信息的泄露。该方法应用的实质是确定噪声发生器产生的输出类噪声信号的功率的最优值,以提供最高质量的干扰,目的是抑制危险信号,该信号可能由于信息活动对象处的侧电磁辐射而泄漏。本文的目的是确定具有特定特性的半导体元件产生类噪声信号的最佳条件,并优化噪声信号的最大输出功率。结果:本文采用线性规划和随机规划方法,以噪声信号在负载阻力处的最大输出功率为准则,估计噪声发生器所需的参数。结论:所进行的随机优化显示了半导体元件初始条件下输出随机变量之间的关系,使得给定优化准则下的负载电阻参数可以得到固定的最优值。如果我们在这个问题的解上加一个给定精度的附加条件,我们可以显著提高噪声半导体元件参数控制的质量。进一步的研究可以确定随机噪声信号在设备输出端的分布,以抵消通过侧电磁辐射和干扰通道泄漏的信息,即天线所连接的发生器-干扰机功率放大器输出端的分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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