We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (EBG) structures, called linear embedding via Green’s operators. It is a diakoptic method based on the Huygens–Schelkunoff principle involving equivalent boundary current sources that electromagnetically characterize the enclosed domain of arbitrary shapes, as if it were a multiport system. In a cascade of embedding steps, separate reusable domains are combined to form larger domains. Device design often involves tuning local medium properties in a compact designated domain with a large environment. Through an additional embedding step the equivalent sources describing the environment can be transferred to the boundary of the designated domain,...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
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 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...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
We propose a modular electromagnetic modeling procedure for large finite electromagnetic band-gap (E...
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 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...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
The calculation of electromagnetic (EM) fields and waves inside finite-sized structures comprised of...
We combine the linear embedding via Green's operators (LEGO) and the eigencurrent expansion method (...