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A flexible algorithm for solving systems of circuit differential-algebraic equations with integrated Fortran 95 compiler for modeling

机译:一种求解电路差分代数方程系统的灵活算法,具有集成Fortran 95编译器建模

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Although many simulation tools contain advanced algorithms for the solution of the systems of differential-algebraic nonlinear equations, some classes of circuits still cause serious problems. In the paper, a very flexible and reliable algorithm for solving the circuit differential-algebraic equations is characterized first, which is based on a sophisticated arrangement of the Newton interpolation polynomial. After that, a reliable method is introduced for improving the convergence with four possible criteria. Unlike the similar algorithms focused on an operating point analysis only, the proposed method also works in a transient analysis. Moreover, for an ability of the procedure to model practically arbitrary electronic device, a subset of the Fortran 95 programming language was integrated to the circuit simulator with a power to differentiate functions symbolically.
机译:虽然许多仿真工具包含用于解决差分代数非线性方程系统的先进算法,但是一些电路仍然造成严重问题。 在本文中,首先表征了一种用于求解电路差分 - 代数方程的非常灵活可靠的算法,其基于牛顿插值多项式的复杂布置。 之后,引入可靠的方法来改善具有四种可能的标准的收敛。 与类似算法仅关注的类似算法仅在操作点分析上,所提出的方法也适用于瞬态分析。 此外,为了使过程模拟实际上是任意电子设备的过程,将FORTRAN 95编程语言的子集与电路模拟器集成到电路模拟器,其能够象征性地区分函数。

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