Title :
Problem-matched basis functions for microstrip coupled slot antennas based on transmission line Green´s functions
Author :
Bruni, S. ; Llombart, N. ; Neto, A. ; Gerini, G. ; Maca, S.
Author_Institution :
Integrated Front End Technol., TNO-FEL, Den Haag, Netherlands
Abstract :
The paper provides a quite general algorithm for the analysis of microstrip coupled slot antennas. The method, particularly well suited for leaky wave slot antennas and applicable to a resonant slot, is based on the construction of a physically appealing, entire domain, MoM basis function which allows a consistent reduction of the number of unknowns and of the total computation time (memory and CPU time). The entire domain basis functions are generated by solving, in a quasi analytical form, the transmission line Green´s function (TLGF) problem with an appropriately chosen excitation. The proposed procedure can also be used as a matrix compression technique when the basis functions are viewed as ruling the grouping of the sub-domain unknowns; this leads to the possibility of applying the method in the framework of a conventional, sub-domain algorithm, by reusing already available codes.
Keywords :
Green´s function methods; antenna theory; leaky wave antennas; matrix algebra; method of moments; microstrip components; slot antenna arrays; slot antennas; transmission line theory; MoM basis function; antenna arrays; computation time; entire domain basis function; leaky wave slot antennas; matrix compression technique; microstrip coupled slot antennas; problem-matched basis functions; resonant slot; sub-domain algorithm; transmission line Green functions; Couplings; Green function; Green´s function methods; Integral equations; Message-oriented middleware; Microstrip antennas; Slot antennas; Transforms; Transmission line antennas; Transmission line matrix methods;
Conference_Titel :
Antennas and Propagation Society International Symposium, 2004. IEEE
Print_ISBN :
0-7803-8302-8
DOI :
10.1109/APS.2004.1330242