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Index minimization of differential-algebraic equations in hybrid analysis for circuit simulation

机译:电路仿真混合分析中微分-代数方程的指标最小化

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Modern modeling approaches for circuit analysis lead to differential-algebraic equations (DAEs). The index of a DAE is a measure of the degree of numerical difficulty. In general, the higher the index is, the more difficult it is to solve the DAE. The index of the DAE arising from the modified nodal analysis (MNA) is determined uniquely by the structure of the circuit. Instead, we consider a broader class of analysis method called the hybrid analysis. For linear time-invariant electric circuits, we devise a combinatorial algorithm for finding an optimal hybrid analysis in which the index of the DAE to be solved attains the minimum. The optimal hybrid analysis often results in a DAE with lower index than MNA.
机译:用于电路分析的现代建模方法导致了微分代数方程(DAE)。 DAE的指数是数字难度程度的度量。通常,索引越高,解决DAE的难度就越大。修改后的节点分析(MNA)产生的DAE指数由电路结构唯一确定。相反,我们考虑了一种更广泛的分析方法,称为混合分析。对于线性时不变电路,我们设计了一种组合算法来查找最佳混合分析,其中要解决的DAE的指标达到最小值。最佳混合分析通常会导致DAE的索引低于MNA。

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