A novel technique for the full-wave analysis of 3-D complex waveguide devices is presented. This new formulation, based on the Boundary Integral-Resonant Mode Expansion (BI-RME) method, allows the rigorous full-wave electromagnetic characterization of 3-D arbitrarily shaped metallic structures making use of extremely low CPU resources (both time and memory). The unknown electric current density on the surface of the metallic elements is represented by means of Rao-Wilton-Glisson basis functions, and an algebraic procedure based on a singular value decomposition is applied to transform such functions into the classical solenoidal and nonsolenoidal basis functions needed by the original BI-RME technique. The developed tool also provide...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
This paper describes a novel technique for the very efficient and accurate full-wave modal analysis ...
A novel technique for the full-wave analysis of 3-D complex waveguide devices is presented. This ne...
A novel technique for the full-wave analysis of 5 3D complex waveguide devices is presented. This ne...
In this paper, a novel computer-aided design (CAD) tool of complex passive microwave devices in wave...
Comunicación presentada en MULCOPIM 2008, International Workshop in Multipactor, Corona and Passive ...
This paper presents a novel CAD tool for the complete characterization of complex passive microwave ...
A new full-wave electromagnetic analysis method based on the Boundary Integral Resonant Mode Expans...
In this paper, a novel computer-aided design (CAD) tool of complex passive microwave devices in wave...
This paper is a preprint of a paper submitted to IET Microwaves Antennas and Propagation and is subj...
This paper describes a novel technique for the very efficient and accurate full-wave modal analysis ...
This work presents the complete characterization of complex passive microwave devices in waveguide t...
This work presents the complete characterization of complex passive microwave devices in waveguide t...
Abstract — This paper describes a novel technique for the very efficient and accurate full-wave mod...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
This paper describes a novel technique for the very efficient and accurate full-wave modal analysis ...
A novel technique for the full-wave analysis of 3-D complex waveguide devices is presented. This ne...
A novel technique for the full-wave analysis of 5 3D complex waveguide devices is presented. This ne...
In this paper, a novel computer-aided design (CAD) tool of complex passive microwave devices in wave...
Comunicación presentada en MULCOPIM 2008, International Workshop in Multipactor, Corona and Passive ...
This paper presents a novel CAD tool for the complete characterization of complex passive microwave ...
A new full-wave electromagnetic analysis method based on the Boundary Integral Resonant Mode Expans...
In this paper, a novel computer-aided design (CAD) tool of complex passive microwave devices in wave...
This paper is a preprint of a paper submitted to IET Microwaves Antennas and Propagation and is subj...
This paper describes a novel technique for the very efficient and accurate full-wave modal analysis ...
This work presents the complete characterization of complex passive microwave devices in waveguide t...
This work presents the complete characterization of complex passive microwave devices in waveguide t...
Abstract — This paper describes a novel technique for the very efficient and accurate full-wave mod...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
Many modern waveguide devices, such as dual-mode filters and diplexers, can be modelled considering ...
This paper describes a novel technique for the very efficient and accurate full-wave modal analysis ...