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Companion models in two-time scale for multitone steady-state simulation of the nonlinear circuits

机译:用于非线性电路多音稳态仿真的两度比例伴侣模型

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The multitone signals make traditional analysis difficult even impossible if the circuits are highly nonlinear. Using multiple time variables allow an efficient representation of these signals. In this formulation the components with different rates of variation are decoupled, each disparate signal being represented by its own artificial time scale. The differential algebraic equations describing the dynamic behavior of these circuits are transformed into multi-time partial differential equations (MPDEs). In order to solve MPDEs, discrete resistive models (companion models) associated to a selected numeric integration algorithm are used to model the dynamic circuit elements. In this paper companion models in 2D are built in order to implement them in a very efficient simulator for steady-state simulation of the nonlinear circuits.
机译:如果电路是高度非线性的,则多音信号使传统分析变得困难甚至不可能。使用多个时间变量可以有效地表示这些信号。在此公式中,具有不同变化率的组件是分离的,每个不同的信号都由其自己的人工时间标度表示。描述这些电路动态行为的微分代数方程式被转换为多次偏微分方程(MPDE)。为了求解MPDE,与选定的数值积分算法关联的离散电阻模型(伴随模型)用于对动态电路元件建模。在本文中,为了在非线性电路的稳态仿真的非常有效的仿真器中实现2D配套模型,需要对其进行构建。

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