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Time-Domain Noise Analysis of Linear Time-Invariant and Linear Time-Variant Systems Using MATLAB and HSPICE

机译:使用MATLAB和HSPICE的线性时间不变和线性时变量的时域噪声分析

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A custom simulation tool that combines HSPICE and MATLAB to enable time-domain noise analysis is reported. The simulation technique is based on computing the statistics of a random process by ensemble averaging and is applicable to both linear tune-invariant (LTI) and linear time-variant (LTV) systems. MATLAB is used to generate a set of representative noise signals, which are imported into HSPICE for simulation. Once the simulations are complete the results are read back into MATLAB and ensemble statistics are calculated. The MATLAB-generated noise signals have a user-defined white-noise floor and flicker noise corner frequency and thus are suitable for modeling a wide variety of electronic components, including CMOS transistors and resistors. Simulation results of the time-dependent output noise of a gated integrator and the timing resolution of a gated integrator/comparator detector are presented to highlight both the utility and the versatility of the tool.
机译:报告了一个自定义模拟工具,将Hspice和MATLAB结合起来启用时域噪声分析。仿真技术基于通过集合平均计算随机过程的统计,并且适用于线性调谐不变(LTI)和线性时变(LTV)系统。 MATLAB用于生成一组代表性噪声信号,该信号被导入为模拟的HSPICE。一旦仿真完成,结果将恢复回到MATLAB并计算集合统计数据。 MATLAB产生的噪声信号具有用户定义的白噪声底板和闪烁的噪声频率,因此适用于建模各种电子元件,包括CMOS晶体管和电阻器。提出了仿真结果的喷射积分器的时间依赖性输出噪声以及门控积分器/比较器检测器的定时分辨率,以突出显示该工具的实用程序和多功能性。

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