Electromagnetic transient simulation method adopting variable-order variable-step-size 3S-DIRK algorithm
An algorithm and step size technology, applied in design optimization/simulation, complex mathematical operations, special data processing applications, etc., can solve problems such as large amount of calculation, achieve high calculation accuracy, suppress numerical oscillation, and ensure the effect of calculation accuracy
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[0045] The present invention will be further described below using the accompanying drawings and examples.
[0046]The concept basis of the present invention is, based on the analysis of the Runge-Kutta method, the shortcomings of the current algorithm are analyzed by using the Butcher matrix, and the three-level diagonal implicit Runge library is constructed by using the theoretical analysis method of the Runge-Kutta method The tower integral algorithm (3stage diagonally implicit RK formula, 3S-DIRK), which is a transformation of the implicit trapezoidal integral method, has a third-order calculation accuracy in normal calculations, and switches to the L-stable algorithm after a failure occurs, and the calculation maintains the second-order calculation Accuracy, at the same time, it has the calculation ability of actively variable step size and passive variable step size, which can comprehensively improve the calculation accuracy of electromagnetic transient simulation.
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