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A New Steady-State Analysis Method for RF-IC Circuits Driven by Multi-Tone Signals

机译:多音信号驱动的RF-IC电路的新稳态分析方法

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The paper presents a new version of the modified nodal method for analysis of the circuits with widely separated time scales. The key idea is to use multiple time variables, which enable signals with widely separated rates of variation to be represented efficiently. The differential algebraic equations (DAEs) describing the RF-IC circuits are transformed into multi-time partial differential equations (MPDEs). In order to solve MPDEs we use the associated resistive discrete equivalent circuits (companion circuits) for the dynamic circuit elements. The algorithm to formulate and to solve the dynamic modified nodal equations was implemented in a computing program, which constitutes a useful tool for steady-state analysis of a very large class of nonlinear analog circuits.
机译:本文提出了一种新版本的改进的节点方法,用于分析具有广泛分离的时间尺度的电路。关键的想法是使用多个时间变量,其使能够有效地表示具有广泛分离的变化率的信号。描述RF-IC电路的差分代数方程(DAE)被转换为多次部分微分方程(MPDES)。为了解决MPDES,我们使用用于动态电路元件的相关电阻离散等效电路(伴随电路)。制定和解决动态修改的节点方程的算法在计算程序中实现了一种用于非常大类非线性模拟电路的稳态分析的有用工具。

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