A novel hybrid approach for solving magnetostatic problems with an unbounded air domain is presented. The basic idea is to use augmented dual grids for interfacing the cell method (CM) and Boundary Element Method by indirect coupling, introducing equivalent surface field sources. The field problem in bounded domains is discretized by the CM in terms of integral variables, i.e., line integrals of the magnetic vector potential. Boundary integral conditions, formulated with the reduced magnetic scalar potential, are applied to avoid the air region meshing. A mixed final symmetric algebraic system, which can be solved by fast iterative solvers, such as Minimal Residual Method or SYMMLQ, is finally obtained. The magnetic field in the air region ...
The use of algebraic formulation for the solution of electromagnetic fields is becoming more and mor...
A finite formulation for 3-D eddy current problems in unbounded domains is presented. This approach ...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A novel hybrid approach for solving magnetostatic problems with an unbounded air domain is presented...
Abstract. We propose mixed and hybrid formulations for the three-dimensional magne-tostatic problem....
This paper describes two hybrid methods coupling finite formulation of electromagnetic fields (FFEF)...
International audienceThis paper presents a hybrid formulation using Whitney facet elements. This fo...
Purpose - To propose a novel 3D hybrid approach, based on a discrete formulation of Maxwell equation...
A unified discretization framework, based on the concept of augmented dual grids, is proposed for de...
A novel 3-D hybrid formulation for time-harmonic eddy current problems in multiply connected domains...
A unified discretization framework, based on the concept of augmented dual grids, is proposed for de...
A three-dimensional magnetostatic field computation method is presented. It uses the vector potentia...
The paper is devoted to an approximation of the solution of Maxwell’s equations in three-dimensional...
The boundary element method using electric field and magnetic flux density has been applied to three...
The use of algebraic formulation for the solution of electromagnetic fields is becoming more and mor...
A finite formulation for 3-D eddy current problems in unbounded domains is presented. This approach ...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A novel hybrid approach for solving magnetostatic problems with an unbounded air domain is presented...
Abstract. We propose mixed and hybrid formulations for the three-dimensional magne-tostatic problem....
This paper describes two hybrid methods coupling finite formulation of electromagnetic fields (FFEF)...
International audienceThis paper presents a hybrid formulation using Whitney facet elements. This fo...
Purpose - To propose a novel 3D hybrid approach, based on a discrete formulation of Maxwell equation...
A unified discretization framework, based on the concept of augmented dual grids, is proposed for de...
A novel 3-D hybrid formulation for time-harmonic eddy current problems in multiply connected domains...
A unified discretization framework, based on the concept of augmented dual grids, is proposed for de...
A three-dimensional magnetostatic field computation method is presented. It uses the vector potentia...
The paper is devoted to an approximation of the solution of Maxwell’s equations in three-dimensional...
The boundary element method using electric field and magnetic flux density has been applied to three...
The use of algebraic formulation for the solution of electromagnetic fields is becoming more and mor...
A finite formulation for 3-D eddy current problems in unbounded domains is presented. This approach ...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...