In this paper, a full-wave numerical approach for the analysis and design of one-dimensional (1-D) printed periodic structures is presented. Electromagnetic-bandgap structures and leaky-wave antennas are important special cases of structures that can be analyzed. The proposed technique is based on a mixed-potential integral equation in a unit-cell environment solved by the method of moments in the spatial domain through a triangular Delaunay mesh. The 1-D periodic vector and scalar Green’s functions are derived in the spectral domain and an efficient sum of spectral integrals is carried out to obtain the spatial-domain quantities. An appropriate choice of the spectral integration path is used in order to consider leakage effects. The method ...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
In this paper, a full-wave numerical approach for the analysis and design of one-dimensional (1-D) ...
In this paper a full-wave numerical approach for the modal analysis of infinite periodic microstrip ...
In this paper a full-wave numerical approach for the modal analysis of infinite periodic microstrip ...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
In this paper, a full-wave numerical approach for the analysis and design of one-dimensional (1-D) ...
In this paper a full-wave numerical approach for the modal analysis of infinite periodic microstrip ...
In this paper a full-wave numerical approach for the modal analysis of infinite periodic microstrip ...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
In this paper a full-wave numerical approach devoted to modal analysis of planar 2D periodic structu...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
A full-wave numerical approach for the analysis and design of two-dimensional printed periodic struc...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The design techniques of leaky-wave antennas usually require complex analysis methods for the rigoro...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...
The numerical analysis of ID-periodic waveguides and antennas can be performed through both approxim...