activity
20162020
most citedAdaptive Sparse Polynomial Chaos Expansions via Leja Interpolation

6 citations · 12 across the 5 of their papers we have counts for

collaborators

5 papers

physics.acc-ph2020

Magnetodynamic Finite-Element Simulation of Accelerator Magnets

H. De Gersem, I. Cortes Garcia, L. A. M. D'Angelo +1

This lecture note describes how to set up and what is behind a magnetodynamic field simulation for an accelerator magnet. The relevant formulation of Maxwell's equations is derived…

math.NA20196 cited

Adaptive Sparse Polynomial Chaos Expansions via Leja Interpolation

Dimitrios Loukrezis, Herbert De Gersem

This work suggests an interpolation-based stochastic collocation method for the non-intrusive and adaptive construction of sparse polynomial chaos expansions (PCEs). Unlike pseudo-…

cs.CE2019

Multirate PWM balance method for the efficient field-circuit coupled simulation of power converters

Andreas Pels, Herbert De Gersem, Ruth V. Sabariego +1

The field-circuit coupled simulation of switch-mode power converters with conventional time discretization is computationally expensive since very small time steps are needed to ap…

cs.CE20161 cited

Automatic Generation of Equivalent Electrothermal SPICE Netlists from 3D Electrothermal Field Models

Thorben Casper, Herbert De Gersem, Sebastian Schöps

Starting from a 3D electrothermal field problem discretized by the Finite Integration Technique, the equivalence to a circuit description is shown by exploiting the analogy to the…

cs.CE20165 cited

Electrothermal Simulation of Bonding Wire Degradation under Uncertain Geometries

Thorben Casper, Herbert De Gersem, Renaud Gillon +4

In this paper, electrothermal field phenomena in electronic components are considered. This coupling is tackled by multiphysical field simulations using the Finite Integration Tech…