Title :
Electromagnetic Field Projection on Finite Element Overlapping Domains
Author :
Wang, Zhen ; Henneron, Thomas ; Nemitz, N. ; Mipo, Jean-Claude ; Piriou, Francis
Author_Institution :
Valeo Electr. Syst., Creteil, France
Abstract :
Coupled problems are made up of subproblems of which the physical nature differs. Using indirect coupling models, the subproblems are calculated separately on their own meshes to ensure precision. To obtain a precise solution for the total problem, it is important to ensure the transmission of information between the subproblems. In this paper, we present field projection methods on overlapping domains. In comparison to earlier works, the classical L2 or L2 projection theory is extended to H(grad), H(curl) and H(div) to obtain increased projection accuracy for the distributional derivatives. A Petrov-Galerkin method is then presented to fill the test space using a biorthogonal basis, without losing the optimality of the result in comparison to the L2 or L2 Ritz-Galerkin method. Using the Petrov-Galerkin method and biorthogonal test functions, the projection is presented using a diagonal matrix. However, in the standard Ritz-Galerkin projections, a linear system must be solved.
Keywords :
Galerkin method; finite element analysis; mesh generation; L2 projection theory; L2 Ritz-Galerkin method; Petrov-Galerkin method; biorthogonal basis; biorthogonal test functions; classical L2 theory; diagonal matrix; distributional derivatives; electromagnetic field projection; field projection methods; finite element overlapping domains; indirect coupling models; information transmission; meshes; physical nature; precision; projection accuracy; standard Ritz-Galerkin projections; subproblems; test space; Accuracy; Equations; Finite element methods; Linear systems; Moment methods; Shape; Sparse matrices; $H({bf grad})$; ${bf H}(div)$ ; ${bf H}({bf curl})$; Biorthogonal test functions; Petrov–Galerkin; Ritz–Galerkin; coupled problem; field transmission; projection;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2012.2227774