An interpolated spatial images method for the analysis of multilayered shielded microwave circuits
Autor
Gómez Díaz, Juan Sebastián; Martínez Mendoza, Mónica; Pérez Soler, Francisco J.; Álvarez Melcón , AlejandroGrupo de investigación
Grupo de Electromagnetismo Aplicado a las Telecomunicaciones (GEAT)Área de conocimiento
Teoría de la Señal y las ComunicacionesPatrocinadores
This work was partially supported by the Spanish Ministry of Education and Science under Grant FPU-AP2006-015 and with the Project TEC2007-67630-C03-02.Fecha de publicación
2008-09Editorial
Wiley&SonsCita bibliográfica
GÓMEZ DÍAZ, J.S., MARTÍNEZ MENDOZA, M., PÉREZ SOLER, F.J., ÁLVAREZ MELCÓN, A. An interpolated spatial images method for the analysis of multilayered shielded microwave circuits. Microwave and Optical Technology Letters, 50 (9): 2294-2300, Septiembre 2008. ISSN 0895-2477Revisión por pares
siPalabras clave
Funciones de GreenMétodos de momentos
Circuitos multicapa
Método de interpolación
Green's functions
Multilayered circuits
Interpolation method
Method of Moments (MOM)
Resumen
In this paper, an efficient interpolation method is presented in order to compute the Green’s function
associated to electrical sources, when they are placed inside cylindrical cavities. The interpolation scheme
is formulated in the frame of the spatial images technique recently developed. The original idea was to
calculate, for every location of a point electric source, the complex values of the electric dipole and
charge images, placed outside the cavity, to impose the appropriate boundary conditions for the
potentials. In order to considerably reduce the computational cost of the original technique, a simple
interpolation method is proposed to obtain the complex values of the images for any source location. To
do that, a rectangular spatial subdivision inside the cavity is proposed. Each new sub-region is controlled
by means of the exact images values obtained when the source is placed at the four corners of the region.
The key idea is to use a bilinear interpolation to obtain ...
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