Nonlinear data-driven model order reduction applied to circuit-field magnetic problem

Archive ouverte : Article de revue

Pierquin, Antoine | Henneron, Thomas

Edité par HAL CCSD ; Institute of Electrical and Electronics Engineers

International audience. As in most of the domains in physics, finite element formulation is a very common method for electromagnetic fields computation. Since many years both proper orthogonal decomposition and empirical interpolation method are also often used in a model order reduction context. If these methods are efficients, their application is intrusive because it requires an access to the matrices and the assembly step. To avoid such an aspect, a data-driven model order reduction based on proper orthogonal decomposition with an approximation of the nonlinear terms by radial basis functions interpolation is applied to a magnetostatic problem coupled with circuit equations. The nonlinear reduced order model only needs solutions of a finite element analysis to be generated.

Consulter en ligne

Suggestions

Du même auteur

Structure Preserving Model Reduction of Low Frequency Electromagnetic Problem based on POD and DEIM | Montier, Laurent

Structure Preserving Model Reduction of Low Frequency Electromagnetic Probl...

Archive ouverte: Article de revue

Montier, Laurent | 2017-02-02

The Proper Orthogonal Decomposition (POD) combined with the (Discrete) Empirical Interpolation Method (DEIM) can be used to reduce the computation time of the solution of a Finite Element (FE) model. However, it can lead to numeri...

Multidisciplinary optimization formulation for the optimization of multirate systems | Pierquin, Antoine

Multidisciplinary optimization formulation for the optimization of multirat...

Archive ouverte: Article de revue

Pierquin, Antoine | 2016-03

International audience. Multidisciplinary optimization strategies are widely used in static case and can be extended to a problem with a time-domain model in order to reduce optimization time. The waveform relaxatio...

Multirate coupling of controlled rectifier and non-linear finite element model based on Waveform Relaxation Method | Pierquin, Antoine

Multirate coupling of controlled rectifier and non-linear finite element mo...

Archive ouverte: Article de revue

Pierquin, Antoine | 2016-01-01

International audience. To study a multirate system, each subsystem can be solved by a dedicated sofware with respect to the physical problem and the time constant. Then, the problem is the coupling of the solutions...

Du même sujet

Data-Driven Model Order Reduction for Magnetostatic Problem Coupled with Circuit Equations | Pierquin, Antoine

Data-Driven Model Order Reduction for Magnetostatic Problem Coupled with Ci...

Archive ouverte: Article de revue

Pierquin, Antoine | 2017

Among the model order reduction techniques, the Proper Orthogonal Decomposition (POD) has shown its efficiency to solve magnetostatic and magneto-quasistatic problems in the time domain. However, the POD is intrusive in the sense ...

Model-Order Reduction of Magnetoquasi-Static Problems Based on POD and Arnoldi-Based Krylov Methods | Pierquin, Antoine

Model-Order Reduction of Magnetoquasi-Static Problems Based on POD and Arno...

Archive ouverte: Communication dans un congrès

Pierquin, Antoine | 2014-05

The proper orthogonal decomposition method and Arnoldi-based Krylov projection method are investigated in order to reduce a finite-element model of a quasi-static problem. Both methods are compared on an academic example in terms ...

A priori error estimation of the structure-preserving modal model reduction by state residualization of a grid forming converter for use in 100% power electronics transmission systems | Cossart, Quentin

A priori error estimation of the structure-preserving modal model reduction...

Archive ouverte: Communication dans un congrès

Cossart, Quentin | 2019-02

International audience. This article deals with the model order reduction by state residualization of power electronic converters. It presents a method to a priori estimate the error induced by this reduction. This ...

Parametric Geometric Metamodel of Nonlinear Magnetostatic Problem Based on POD and RBF Approaches | Boumesbah, Allaa Eddine

Parametric Geometric Metamodel of Nonlinear Magnetostatic Problem Based on ...

Archive ouverte: Article de revue

Boumesbah, Allaa Eddine | 2022

International audience. A parametric geometric metamodel is built for a nonlinear magnetostatic problem, using proper orthogonal decomposition approach combined with radial basis functions interpolation. Furthermore...

Model Order Reduction of Magnetoquasistatic Problems Based on POD and Arnoldi-based Krylov Methods | Pierquin, Antoine

Model Order Reduction of Magnetoquasistatic Problems Based on POD and Arnol...

Archive ouverte: Article de revue

Pierquin, Antoine | 2015

International audience. The Proper Orthogonal Decomposition method and the Arnoldi-based Krylov projection method are investigated in order to reduce a finite element model of a quasistatic problem. Both methods are...

Error Estimator for Cauer Ladder Network Representation | Hiruma, Shingo

Error Estimator for Cauer Ladder Network Representation

Archive ouverte: Article de revue

Hiruma, Shingo | 2022

International audience. The Cauer Ladder Network (CLN) method enables to construct a reduced based circuit model of analytical or numerical models, e.g. Finite Element (FE) model, under quasistatic approximation. Th...

Chargement des enrichissements...