We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencurrent ExpansionMethod (EEM) to efficiently deal and locally optimize 2-D electrically large electromagnetic band-gap (EBG) structures. In LEGO terminology, the composite EBG structure is broken up (diakopted) into constitutive elements called bricks that we characterize through scattering operators by invoking Love’s equivalence principle, while at the same time, the electromagnetic interaction among the bricks is captured by transfer operators. The resulting electromagnetic problem is then succinctly formulated through an integral equation involving the total inverse scattering operator S-1 of the structure. To perform local optimization, t...
Linear embedding via Green's operators (LEGO) is a computational method in which the multiple scatte...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
Linear embedding via Green's operators (LEGO) is a computational method in which the multiple scatte...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We propose a methodology based on the Linear Embedding via Green’s Operators (LEGO) and the Eigencur...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
Linear embedding via Green's operators (LEGO) is a computational method in which the multiple scatte...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...
We present an efficient formulation based on the linear embedding via Green's operators (LEGO) and t...