Proper Generalized Decomposition method applied to solve 3D Magneto Quasistatic Field Problems coupling with External Electric Circuits

Archive ouverte : Article de revue

Henneron, Thomas | Clenet, Stéphane

Edité par HAL CCSD ; Institute of Electrical and Electronics Engineers

In the domain of numerical computation, Proper Generalized Decomposition (PGD), which consists of approximating the solution by a truncated sum of separable functions, is more and more applied in mechanics and has shown its efficiency in terms of computation time and memory requirements. We propose to evaluate the PGD method in order to solve 3D quasi static field problems coupling with an external electric circuit. The numerical model, obtained from the PGD formulation, is used to study 3D examples. The results are compared to those obtained when solving the full original problem. It is shown in this paper that the computation time rate versus the number of time steps is very small compared to the one a classical time stepping method and can be very efficient to solve problems when small time steps are required.. International audience. In the domain of numerical computation, Proper Generalized Decomposition (PGD), which consists of approximating the solution by a truncated sum of separable functions, is more and more applied in mechanics and has shown its efficiency in terms of computation time and memory requirements. We propose to evaluate the PGD method in order to solve 3D quasi static field problems coupling with an external electric circuit. The numerical model, obtained from the PGD formulation, is used to study 3D examples. The results are compared to those obtained when solving the full original problem. It is shown in this paper that the computation time rate versus the number of time steps is very small compared to the one a classical time stepping method and can be very efficient to solve problems when small time steps are required.

Consulter en ligne

Suggestions

Du même auteur

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...

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...

Application of the PGD and DEIM to solve a 3D Non-Linear Magnetostatic Prob...

Archive ouverte: Article de revue

Henneron, Thomas | 2015-12-01

International audience. Among the model order reduction techniques, the Proper Generalized Decomposition (PGD) has shown its efficiency to solve static and quasistatic problems in the time domain. However, the intro...

Du même sujet

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 ...

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...

Model-Order Reduction of Multiple-Input Non-Linear Systems Based on POD and...

Archive ouverte: Article de revue

Henneron, Thomas | 2015-03

International audience. The proper orthogonal decomposition combined with the discrete empirical interpolation method is investigated in order to reduce a finite-element model of a multiple-input non-linear device. ...

Error Estimators for Proper Generalized Decomposition in Time-Dependent Ele...

Archive ouverte: Article de revue

Muller, F. | 2020

International audience. Due to fine discretization in space and time, the simulation of transient electromagnetic phenomena results in a large system ofequations. To cope with this computational effort, model order ...

Reduction of a Finite Element Parametric Model using Adaptive POD Methods –...

Archive ouverte: Article de revue

Clenet, Stéphane | 2015-12-01

International audience. Model Order Reduction (MOR) methods enable reduction of the computation time when dealing with parametrized numerical models. Among these methods, the Proper Orthogonal Decomposition (POD) me...

Finite-Element Model Reduction of Surface-Mounted Permanent Magnet Machines...

Archive ouverte: Article de revue

Al Eit, M. | 2018-09

International audience. This paper presents a methodology that allows taking advantage of the geometrical periodicity of electrical machines together with the modeling of rotor motion. It enables by means of the dis...

Chargement des enrichissements...