Title :
Simple and Accurate Analytical Model of Planar Grids and High-Impedance Surfaces Comprising Metal Strips or Patches
Author :
Luukkonen, Olli ; Simovski, Constantin ; Granet, Gérard ; Goussetis, George ; Lioubtchenko, Dmitri ; Räisänen, Antti V. ; Tretyakov, Sergei A.
Author_Institution :
Dept. of Radio Sci. & Eng./SMARAD CoE, TKK Helsinki Univ. of Technol., Helsinki
fDate :
6/1/2008 12:00:00 AM
Abstract :
Simple analytical formulas are introduced for the grid impedance of electrically dense arrays of square patches and for the surface impedance of high-impedance surfaces based on the dense arrays of metal strips or square patches over ground planes. Emphasis is on the oblique-incidence excitation. The approach is based on the known analytical models for strip grids combined with the approximate Babinet principle for planar grids located at a dielectric interface. Analytical expressions for the surface impedance and reflection coefficient resulting from our analysis are thoroughly verified by full-wave simulations and compared with available data in open literature for particular cases. The results can be used in the design of various antennas and microwave or millimeter wave devices which use artificial impedance surfaces and artificial magnetic conductors (reflect-array antennas, tunable phase shifters, etc.), as well as for the derivation of accurate higher-order impedance boundary conditions for artificial (high-) impedance surfaces. As an example, the propagation properties of surface waves along the high-impedance surfaces are studied.
Keywords :
microstrip antenna arrays; strip lines; surface electromagnetic waves; Babinet principle; antennas; artificial magnetic conductors; dielectric interface; electrically dense arrays; full-wave simulations; grid impedance; high-impedance surfaces; higher-order impedance boundary conditions; metal strips; microwave wave devices; millimeter wave devices; oblique-incidence excitation; patches; planar grids; reflection coefficient; Analytical models; Antennas and propagation; Dielectrics; Magnetic analysis; Microwave antennas; Reflection; Reflector antennas; Strips; Surface impedance; Surface waves; Analytical model; high impedance surface; oblique incidence excitation;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2008.923327