The Finite Element Method (FEM) is a powerful numerical method to solve wave propagation problems for open-region electromagnetic radiation/scattering problems involving objects with arbitrary geometry and constitutive parameters. In high-frequency applications, the FEM requires an electrically large computational domain, implying a large number of unknowns, such that the numerical solution of the problem is not feasible even on state-of-the-art computers. An appealing way to solve a large FEM problem is to employ a Domain Decomposition Method (DDM) that allows the decomposition of a large problem into several coupled subproblems which can be solved independently, thus reducing considerably the memory storage requirements. In this thesis, t...
We introduce the forward-backward domain decomposition method (FB-DDM), which is basically an improv...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The first part of the paper presents the implementation and performance of a new absorbing boundary ...
We present a comparative evaluation of two novel and practical perfectly matched layer (PML) impleme...
A domain decomposition method is introduced to facilitate the efficient and rigorous computation of ...
In this paper, we generalize this algorithm to 3D scattering problems, and we demonstrate that the a...
We introduce the locally-conformal perfectly matched layer (PML) approach, which is an easy and stra...
This paper presents a macro-element (ME) enhanced vector finite element method (FEM) with the perfec...
International audienceThe electromagnetic dual-primal finite element tearing and interconnecting (FE...
In this paper, we introduce a parallelized version of a novel, non-iterative domain decomposition al...
This dissertation aims at developing sophisticated finite-element based numerical algorithms for eff...
HelmPole- A finite element solver for scattering problems on unbounded domains: Implementation based...
The Finite Element Tearing and Interconnecting (FETI) and its variants are probably the most celebra...
In this article, we introduce a new type of Characteristic Basis Finite Element Method (CBFEM), whic...
We review non-conformal domain decomposition methods (DDMs) and their applications in solving electr...
We introduce the forward-backward domain decomposition method (FB-DDM), which is basically an improv...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The first part of the paper presents the implementation and performance of a new absorbing boundary ...
We present a comparative evaluation of two novel and practical perfectly matched layer (PML) impleme...
A domain decomposition method is introduced to facilitate the efficient and rigorous computation of ...
In this paper, we generalize this algorithm to 3D scattering problems, and we demonstrate that the a...
We introduce the locally-conformal perfectly matched layer (PML) approach, which is an easy and stra...
This paper presents a macro-element (ME) enhanced vector finite element method (FEM) with the perfec...
International audienceThe electromagnetic dual-primal finite element tearing and interconnecting (FE...
In this paper, we introduce a parallelized version of a novel, non-iterative domain decomposition al...
This dissertation aims at developing sophisticated finite-element based numerical algorithms for eff...
HelmPole- A finite element solver for scattering problems on unbounded domains: Implementation based...
The Finite Element Tearing and Interconnecting (FETI) and its variants are probably the most celebra...
In this article, we introduce a new type of Characteristic Basis Finite Element Method (CBFEM), whic...
We review non-conformal domain decomposition methods (DDMs) and their applications in solving electr...
We introduce the forward-backward domain decomposition method (FB-DDM), which is basically an improv...
We present a domain decomposition approach for the computation of the electro-magnetic eld within pe...
The first part of the paper presents the implementation and performance of a new absorbing boundary ...