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20172023
most citedSTEAM: A Hierarchical Co-Simulation Framework for Superconducting Accelerator Magnet Circuits

52 citations · 63 across the 14 of their papers we have counts for

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9 papers · 1 filter

math.NA2021

Parallel-in-Time Solution of Eddy Current Problems Using Implicit and Explicit Time-stepping Methods

Idoia Cortes Garcia, Iryna Kulchytska-Ruchka, Markus Clemens +1

The time domain analysis of eddy current problems often requires the simulation of long time intervals, e.g. until a steady state is reached. Fast-switching excitations e.g. in pul…

math.NA2020

Parallel-in-Time Simulation of Power Converters Using Multirate PDEs

Andreas Pels, Iryna Kulchytska-Ruchka, Sebastian Schöps

This paper presents an efficient numerical algorithm for the simulation of pulse-width modulated power converters via parallelization in time domain. The method applies the multira…

math.NA2020

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

Idoia Cortes Garcia, Jonas Pade, Sebastian Schöps +1

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-quas…

math.NA2020

Towards a Parallel-in-Time Calculation of Time-Periodic Solutions with Unknown Period

Iryna Kulchytska-Ruchka, Sebastian Schöps

This paper presents a novel parallel-in-time algorithm able to compute time-periodic solutions of problems where the period is not given. Exploiting the idea of the multiple shooti…

math.NA2019

IsoGeometric Approximations for Electromagnetic Problems in Axisymmetric Domains

Abele Simona, Luca Bonaventura, Carlo de Falco +1

We propose a numerical method for the solution of electromagnetic problems on axisymmetric domains, based on a combination of a spectral Fourier approximation in the azimuthal dire…

math.NA2019

Generalized Circuit Elements

Idoia Cortes Garcia, Sebastian Schöps, Christian Strohm +1

The structural analysis, i.e., the investigation of the differential-algebraic nature, of circuits containing simple elements, i.e., resistances, inductances and capacitances is we…