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Time-domain non-Monte Carlo noise simulation for nonlinear dynamic circuits with arbitrary excitations

机译:具有任意激励的非线性动态电路的时域非蒙特卡罗噪声仿真

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摘要

A time-domain, non-Monte Carlo method for computer simulation of electrical noise in nonlinear dynamic circuits with arbitrary excitations and arbitrary large-signal waveforms is presented. This time-domain noise simulation method is based on results from the theory of stochastic differential equations. The noise simulation method is general in the following sense. Any nonlinear dynamic circuit with any kind of excitation, which can be simulated by the transient analysis routine in a circuit simulator, can be simulated by our noise simulator in time-domain to produce the noise variances and covariances of circuit variables as a function of time, provided that noise models for the devices in the circuit are available. Noise correlations between circuit variables at different time points can also be calculated. Previous work on computer simulation of noise in electronic circuits is reviewed with comparisons to our method. Shot, thermal, and flicker noise models for integrated-circuit devices, in the context of our time-domain noise simulation method, are discussed. The implementation of this noise simulation method in a circuit simulator (SPICE) is described. Two examples of noise simulation (a CMOS inverter and a BJT active mixer) are given.
机译:提出了一种时域非蒙特卡罗方法,用于计算机模拟非线性动态电路中具有任意激励和任意大信号波形的电噪声。这种时域噪声模拟方法基于随机微分方程理论的结果。在以下意义上,噪声模拟方法是通用的。可以通过电路模拟器中的瞬态分析例程进行仿真的,具有任何类型激励的任何非线性动态电路,都可以通过我们的噪声模拟器在时域中进行模拟,以产生随时间变化的电路变量的噪声方差和协方差,前提是电路中器件的噪声模型可用。还可以计算不同时间点的电路变量之间的噪声相关性。通过与我们的方法进行比较,回顾了以前在电子电路中的计算机仿真中所做的工作。在我们的时域噪声仿真方法的背景下,讨论了集成电路器件的散粒,热和闪烁噪声模型。描述了这种噪声仿真方法在电路仿真器(SPICE)中的实现。给出了两个噪声仿真示例(CMOS反相器和BJT有源混频器)。

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