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Numerical steady-state analysis of nonlinear analog circuits driven by multitone signals

机译:多音信号驱动的非线性模拟电路的数值稳态分析

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Widely-separated time scales appear in many electronic circuits, making traditional analysis difficult, even impossible, if the circuits are highly nonlinear. This paper presents a new version of the modified nodal method in two time variables for the analysis of the circuit with widely separated time scales. By applying this approach the differential algebraic equations (DAE) describing the nonlinear analog circuits driven by multitone signals are transformed into multitime partial differential equations (MPDEs). In order to solve MPDEs, associated resistive discrete equivalent circuits (companion circuits) for the dynamic circuit elements are used. The boundary conditions are detailed and simulation results are presented.
机译:如果电路是高度非线性的,则在许多电子电路中会出现时间间隔很大的分隔符,这使得传统分析变得困难,甚至不可能。本文提出了两个时间变量的改进节点方法的新版本,用于分析时间尺度相距很远的电路。通过应用这种方法,将描述由多音信号驱动的非线性模拟电路的微分代数方程(DAE)转换为多时间偏微分方程(MPDE)。为了求解MPDE,使用了用于动态电路元件的相关电阻分立等效电路(同伴电路)。详细说明了边界条件,并给出了仿真结果。

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