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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Structural Macromodeling of Analog Circuits Through Model Decoupling and Transformation
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Structural Macromodeling of Analog Circuits Through Model Decoupling and Transformation

机译:通过模型去耦和变换来模拟电路的结构宏建模

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This paper presents a systematic methodology for developing structural macromodels expressing the linear and weakly nonlinear performance of analog circuits. The models are in the frequency domain. The methodology includes two steps. First, building-block behavioral (BBB) concept is used to describe the basic building blocks of a circuit, and a decoupling technique is used to generate uncoupled BBB structural circuit models. Then, a nonlinear system is represented as a system with nonlinear inputs and linearly coupled blocks, and the linear couplings are removed. Experiments are offered for single-stage OpAmp, three-stage OpAmp, and operational transconductor amplifier (OTA) circuits. The produced models are tunable for the required accuracy, offer insight into the circuit operation, and offer simulation time speedup as compared to SPICE simulation.
机译:本文提出了一种开发结构宏模型的系统方法,该结构宏模型表达了模拟电路的线性和弱非线性性能。这些模型在频域中。该方法包括两个步骤。首先,使用构造块行为(BBB)概念来描述电路的基本构造块,并使用去耦技术来生成未耦合的BBB结构电路模型。然后,将非线性系统表示为具有非线性输入和线性耦合块的系统,并删除线性耦合。针对单级OpAmp,三级OpAmp和运算跨导放大器(OTA)电路提供了实验。与SPICE仿真相比,所产生的模型可调整以达到所需的精度,洞悉电路操作,并加快仿真速度。

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