DocumentCode :
1301991
Title :
Fast and Accurate Wide-Band Analysis of Antennas Mounted on Conducting Platform Using AIM and Asymptotic Waveform Evaluation Technique
Author :
Wang, Xing ; Gong, Shu-Xi ; Guo, Jing-Li ; Liu, Ying ; Zhang, Peng-Fei
Author_Institution :
Nat. Key Lab. of Sci. & Technol. on Antennas & Microwaves, Xidian Univ., Xi´´an, China
Volume :
59
Issue :
12
fYear :
2011
Firstpage :
4624
Lastpage :
4633
Abstract :
The adaptive integral method (AIM) in conjunction with the asymptotic waveform evaluation (AWE) technique is presented for wide-band analysis of antennas in the presence of electrically large conducting platforms. In the AWE technique, the Padé approximation solution obtained by matching the coefficients of the Taylor series (namely, moments) is utilized to achieve fast frequency sweeping. Besides the calculation and storage of the high order frequency derivatives of impedance matrices, the AWE technique requires repeatedly solving the linear system for the moments. Thus the AIM is employed to reduce matrix storage and to accelerate all the matrix-vector multiplications in both the linear system for the moments and the iterative solver. Furthermore, a localized self-box inclusion (SBI) preconditioner is used to accelerate the solution procedure of the linear system for the moments. Finally, three numerical examples are given and discussed. The input admittance and return loss of the antennas over a given frequency band are obtained by AIM and AIM-AWE method, respectively. The good agreements show that the proposed hybrid technique can greatly reduce the computation time without loss of accuracy.
Keywords :
approximation theory; broadband antennas; integral equations; iterative methods; matrix multiplication; method of moments; vectors; Padé approximation solution; Taylor series; adaptive integral method; antennas; asymptotic waveform evaluation technique; high order frequency derivative; impedance matrix; input admittance; iterative solver; linear system; localized self-box inclusion preconditioner; matrix storage reduction; matrix-vector multiplication; moments; return loss; wide-band analysis; Approximation methods; Fast Fourier transforms; Impedance; Linear systems; Memory management; Moment methods; Surface impedance; Adaptive integral method (AIM); asymptotic waveform evaluation (AWE) method; fast Fourier transform (FFT); forward mode automatic differentiation (FMAD); method of moments (MoM); preconditioner;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2165495
Filename :
5991936
Link To Document :
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