In this paper, a novel hybrid technique for analyzing complex antennas around the coated object is proposed, which is termed as “iterative vector fields with Physical Optics (PO)”. A closed box is used to enclose the antennas and the complex field vectors on the box' surfaces can then be obtained using Huygens principle. The equivalent electromagnetic currents on Huygens surfaces are computed by Higher-order Method of Moments (HOB-MoM) and the fields scattered from the coated object are calculated by PO method. In addition, the parallel technique based on Message Passing Interface (MPI) and Scalable Linear Algebra Package (ScaLAPACK) is employed so as to accelerate the computation. Numerical examples are presented to validate and to show the effectiveness of the proposed method on solving the practical engineering problem.
Ying YAN
Xidian University, Saitama University
Xunwang ZHAO
Xidian University
Yu ZHANG
Xidian University
Changhong LIANG
Xidian University
Zhewang MA
Saitama University
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Ying YAN, Xunwang ZHAO, Yu ZHANG, Changhong LIANG, Zhewang MA, "Parallel Computation of Complex Antennas around the Coated Object Using Iterative Vector Fields Technique" in IEICE TRANSACTIONS on Electronics,
vol. E97-C, no. 7, pp. 661-669, July 2014, doi: 10.1587/transele.E97.C.661.
Abstract: In this paper, a novel hybrid technique for analyzing complex antennas around the coated object is proposed, which is termed as “iterative vector fields with Physical Optics (PO)”. A closed box is used to enclose the antennas and the complex field vectors on the box' surfaces can then be obtained using Huygens principle. The equivalent electromagnetic currents on Huygens surfaces are computed by Higher-order Method of Moments (HOB-MoM) and the fields scattered from the coated object are calculated by PO method. In addition, the parallel technique based on Message Passing Interface (MPI) and Scalable Linear Algebra Package (ScaLAPACK) is employed so as to accelerate the computation. Numerical examples are presented to validate and to show the effectiveness of the proposed method on solving the practical engineering problem.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/transele.E97.C.661/_p
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@ARTICLE{e97-c_7_661,
author={Ying YAN, Xunwang ZHAO, Yu ZHANG, Changhong LIANG, Zhewang MA, },
journal={IEICE TRANSACTIONS on Electronics},
title={Parallel Computation of Complex Antennas around the Coated Object Using Iterative Vector Fields Technique},
year={2014},
volume={E97-C},
number={7},
pages={661-669},
abstract={In this paper, a novel hybrid technique for analyzing complex antennas around the coated object is proposed, which is termed as “iterative vector fields with Physical Optics (PO)”. A closed box is used to enclose the antennas and the complex field vectors on the box' surfaces can then be obtained using Huygens principle. The equivalent electromagnetic currents on Huygens surfaces are computed by Higher-order Method of Moments (HOB-MoM) and the fields scattered from the coated object are calculated by PO method. In addition, the parallel technique based on Message Passing Interface (MPI) and Scalable Linear Algebra Package (ScaLAPACK) is employed so as to accelerate the computation. Numerical examples are presented to validate and to show the effectiveness of the proposed method on solving the practical engineering problem.},
keywords={},
doi={10.1587/transele.E97.C.661},
ISSN={1745-1353},
month={July},}
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TY - JOUR
TI - Parallel Computation of Complex Antennas around the Coated Object Using Iterative Vector Fields Technique
T2 - IEICE TRANSACTIONS on Electronics
SP - 661
EP - 669
AU - Ying YAN
AU - Xunwang ZHAO
AU - Yu ZHANG
AU - Changhong LIANG
AU - Zhewang MA
PY - 2014
DO - 10.1587/transele.E97.C.661
JO - IEICE TRANSACTIONS on Electronics
SN - 1745-1353
VL - E97-C
IS - 7
JA - IEICE TRANSACTIONS on Electronics
Y1 - July 2014
AB - In this paper, a novel hybrid technique for analyzing complex antennas around the coated object is proposed, which is termed as “iterative vector fields with Physical Optics (PO)”. A closed box is used to enclose the antennas and the complex field vectors on the box' surfaces can then be obtained using Huygens principle. The equivalent electromagnetic currents on Huygens surfaces are computed by Higher-order Method of Moments (HOB-MoM) and the fields scattered from the coated object are calculated by PO method. In addition, the parallel technique based on Message Passing Interface (MPI) and Scalable Linear Algebra Package (ScaLAPACK) is employed so as to accelerate the computation. Numerical examples are presented to validate and to show the effectiveness of the proposed method on solving the practical engineering problem.
ER -