The Poggio-Miller-Chan-Harrington-Wu-Tsai (PM- CHWT) integral equation discretized with the method of mo- ments (MoM) in conjunction with the edge-based Rao-Wilton- Glisson (RWG) set is normally used in the electromagnetic scattering analysis of arbitrarily shaped penetrable structures. However, since the RWG basis functions impose the normal- current continuity across adjacent triangles arising in the surface mesh, the RWG-based implementations are only valid for confor- mal triangulations. In this paper, we introduce a nonconforming PMCHWT domain decomposition method for the scattering analysis of penetrable structures which is valid for conformal and nonconformal meshes. This scheme does not require the definition of artificial enclosing...
The traditional discretizations of the electric-field integral equation (EFIE) impose the continuity...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The Finite Element Tearing and Interconnecting (FETI) and its variants are probably the most celebra...
The Poggio-Miller-Chan-Harrington-Wu-Tsai (PM- CHWT) integral equation discretized with the method ...
We review non-conformal domain decomposition methods (DDMs) and their applications in solving electr...
The electromagnetic scattering analysis of arbitrarily shaped ferromagnetic bodies is usually carrie...
The discretization by the method of moments (MoM) of integral equations in the electromagnetic scatt...
©2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
In this paper, we generalize this algorithm to 3D scattering problems, and we demonstrate that the a...
Recent attention has been devoted to the development of nonconforming method-of-moment (MoM) impleme...
In this paper, a novel non-overlapping and noncon-formal domain decomposition method (DDM) based on ...
Nonconformal nonoverlapping domain decomposition method (DDM) with mixed basis functions is presente...
In this paper, a parallel nonoverlapping and nonconformal domain decomposition method (DDM) is propo...
©2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
©2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
The traditional discretizations of the electric-field integral equation (EFIE) impose the continuity...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The Finite Element Tearing and Interconnecting (FETI) and its variants are probably the most celebra...
The Poggio-Miller-Chan-Harrington-Wu-Tsai (PM- CHWT) integral equation discretized with the method ...
We review non-conformal domain decomposition methods (DDMs) and their applications in solving electr...
The electromagnetic scattering analysis of arbitrarily shaped ferromagnetic bodies is usually carrie...
The discretization by the method of moments (MoM) of integral equations in the electromagnetic scatt...
©2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
In this paper, we generalize this algorithm to 3D scattering problems, and we demonstrate that the a...
Recent attention has been devoted to the development of nonconforming method-of-moment (MoM) impleme...
In this paper, a novel non-overlapping and noncon-formal domain decomposition method (DDM) based on ...
Nonconformal nonoverlapping domain decomposition method (DDM) with mixed basis functions is presente...
In this paper, a parallel nonoverlapping and nonconformal domain decomposition method (DDM) is propo...
©2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
©2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
The traditional discretizations of the electric-field integral equation (EFIE) impose the continuity...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The Finite Element Tearing and Interconnecting (FETI) and its variants are probably the most celebra...