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Waveform relaxation for low frequency coupled field/circuit differential-algebraic models of index 2

2020/05/27 by Idoia Cortes Garcia, Jonas Pade, Garcia, Idoia Cortes +5 · 1 citation
Engineering · Mathematics · #35Q61 #65L05 #65Z05 #68W10 #Computational Engineering #Electromagnetic Simulation and Numerical Methods #FOS: Computer and information sciences #FOS: Mathematics #Finance #Numerical Analysis (math.NA) #Numerical methods for differential equations #Superconducting Materials and Applications #and Science (cs.CE)

paper · pdf · doi:10.48550/arxiv.2005.13272

openalex publication_date 2020/05/27 · openalex created_date 2022/07/26 · openalex updated_date 2026/07/28

Abstract

Motivated by the task to design quench protection systems for superconducting magnets in particle accelerators we address a coupled field/circuit simulation based on a magneto-quasistatic field modeling. We investigate how a waveform relaxation of Gauß-Seidel type performs for a coupled simulation when circuit solving packages are used that describe the circuit by the modified nodal analysis. We present sufficient convergence criteria for the coupled simulation of FEM discretised field models and circuit models formed by a differential-algebraic equation (DAE) system of index 2. In particular, we demonstrate by a simple benchmark system the drastic influence of the circuit topology on the convergence behavior of the coupled simulation.

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