DocumentCode :
1130868
Title :
A Modification of the Kummer´s Method for Efficient Computation of the Green´s Function for Doubly Periodic Structures
Author :
Ivanishin, Michael M. ; Skobelev, Sergei P.
Author_Institution :
Res. Inst. Buran, Kiev, Ukraine
Volume :
57
Issue :
9
fYear :
2009
Firstpage :
2794
Lastpage :
2798
Abstract :
An auxiliary function in the form of standing spherical waves with attenuation is proposed in the Kummer´s method for accelerating the convergence of the spectral series representing the Green´s function of doubly periodic structures in free space. Expressions for the amplitude and phase constants of the auxiliary waves versus their attenuation constant are derived, at which the spectral difference series formed as a result of the Kummer´s transformation converges in the worst case as the Floquet mode propagation constant in the power of minus 5, 9, and 13 for the cases of using one, two, and three auxiliary waves, respectively, while the spatial series formed by the auxiliary waves converges exponentially. Some examples allowing determination of optimum values for the attenuation constant are considered, and some comparative results characterizing the effectiveness of the technique proposed are presented and discussed.
Keywords :
Green´s function methods; computational electromagnetics; convergence of numerical methods; electromagnetic wave propagation; periodic structures; Floquet mode propagation constant; Green´s function; Kummer´s method; attenuation constant; convergence method; doubly periodic structure; standing spherical wave; Acceleration; Antenna arrays; Attenuation; Convergence; Green´s function methods; Lattices; Periodic structures; Phased arrays; Process design; Propagation constant; Acceleration techniques; Kummer´s method; numerical methods; periodic Green´s functions; periodic structures;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2009.2027188
Filename :
5161287
Link To Document :
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