S Schöps, H De Gersem… - IEEE Transactions on …, 2010 - math.uni-wuppertal.de
This paper proposes a framework of waveform relaxation methods to simulate electromagnetic fields coupled to electric networks. Within this framework, a guarantee for …
A Bartel, S Baumanns, S Schöps - Applied Numerical Mathematics, 2011 - Elsevier
Modeling electric circuits that contain magnetoquasistatic (MQS) devices leads to a coupled system of differential-algebraic equations (DAEs). In our case, the MQS device is described …
This book deals with the analysis and development of numerical methods for the time- domain analysis of multiphysical effects in superconducting circuits of particle accelerator …
The magnetoquasistatic simulation of large power converters, in particular transformers, requires efficient models for their foils windings by means of homogenization techniques …
Modeling with partial differential-algebraic equations is a natural and universal approach valid for various applications with coupled subsystems. This contribution summarizes the …
This paper proposes a framework of waveform relaxation methods to simulate electromagnetic fields coupled to electric networks. Within this framework, a guarantee for …
H Egger, K Schmidt, V Shashkov - Journal of Computational and Applied …, 2021 - Elsevier
We consider the efficient numerical solution of coupled dynamical systems, consisting of a low dimensional nonlinear part and a high dimensional linear time invariant part, eg …
The magnetoquasistatic simulation of large power converters, in particular transformers, requires efficient models for their foils windings by means of homogenization techniques. In …
This work is devoted to the simulation of electrical/electronic circuits incorporating electromagnetic devices. The focus is on different couplings of the circuit equations …