A structural analysis of field/circuit coupled problems based on a generalised circuit element
DOI10.1007/s11075-019-00686-xzbMath1447.78014arXiv1801.07081OpenAlexW3099523125MaRDI QIDQ2287870
Herbert De Gersem, Idoia Cortes Garcia, Sebastian Schöps
Publication date: 22 January 2020
Published in: Numerical Algorithms (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1801.07081
differential algebraic equationsmodified nodal analysiseddy currentsdifferential index\(T-\Omega\) formulation
Finite element, Galerkin and related methods applied to problems in optics and electromagnetic theory (78M10) Electromagnetic theory (general) (78A25) Numerical methods for differential-algebraic equations (65L80)
Related Items (5)
Cites Work
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- Large-scale networks in engineering and life sciences. Based on the summer school, Magdeburg, Germany, September 26--30, 2011
- Differential-algebraic equations. A projector based analysis
- Structural analysis of electrical circuits including magnetoquasistatic devices
- Eddy current approximation of Maxwell equations. Theory, algorithms and applications
- Finite element differential-algebraic systems for eddy current problems
- An analysis of Nédélec's method for the spatial discretization of Maxwell's equations
- Monotonicity-preserving interproximation of \(B\)-\(H\)-curves
- Winding functions in transient magnetoquasistatic field-circuit coupled simulations
- Systems of Differential Algebraic Equations in Computational Electromagnetics
- Field Computation for Accelerator Magnets
- A Concept for Classification of Partial Differential Algebraic Equations in Nanoelectronics
- Differential/Algebraic Equations are not ODE’<scp>s</scp>
- Structural analysis of electric circuits and consequences for MNA
- Finite Element Methods for Maxwell's Equations
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