模拟和射频电路宏模型的系统级分析

Xin Li, Peng Li, Yang Xu, L. Pileggi
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引用次数: 16

摘要

混合信号集成系统的设计和验证需要系统级模型抽象。基于广义Volterra系列的模型已成功地应用于模拟和射频元件宏模型,但其复杂性有时会限制其在时变系统和具有复杂器件模型或众多寄生的大型电路中的应用。在本文中,我们提出了简单有效的模拟和射频电路宏模型,为感兴趣的频带上的大型复杂时变电路提供准确的模型抽象。从系统级框图模型结构出发,以窄频带为研究对象,采用紧凑的降阶模型形式,有效地捕捉了RLC耦合寄生的非线性行为和影响。虽然宏模型可以在频率扩展点的数量方面以精度为代价,但我们发现,大约一个频率点的扩展提供了大多数RF和窄带模拟组件的系统级分析所需的精度。宏模型形式对应于框图结构,这些框图结构很容易合并到基于Simulink的系统级仿真工具中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analog and RF circuit macromodels for system-level analysis
Design and validation of mixed-signal integrated systems require system-level model abstractions. Generalized Volterra series based models have been successfully applied for analog and RF component macromodels, but their complexity can sometimes limit their utility for time-varying systems and large circuits with complex device models or numerous parasitics. In this paper we propose simple and efficient analog and RF circuit macromodels that provide accurate model abstractions for large, complex time-varying circuits over frequency bands of interest. By starting with the system-level block diagram model structures and focusing on the narrow RF bands, the proposed macromodels can efficiently capture the nonlinear behavior as well as the impact of RLC coupling parasitics via compact reduced-order model forms. While the macromodel can trade accuracy for simplicity in terms of the number of frequency expansion points, we find that expansion about one frequency point provides the accuracy required for system-level analysis of most RF and narrow-band analog components. The macromodel form corresponds to block diagram structures that are easily incorporated into our system-level simulation tool based on Simulink.
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