LOW RCS DIPOLE ARRAY SYNTHESIS BASED ON MOM-PSO HYBRID ALGORITHM

In this paper, a hybrid algorithm combined method of moments (MoM) with particle swarm optimization (PSO) is used to realize low radar cross section (RCS) array synthesis. Both the scattering factor and the radiation factor are involved in the proposed objective function to achieve the promising dip...

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Published inElectromagnetic waves (Cambridge, Mass.) Vol. 94; pp. 119 - 132
Main Authors Wang, Wen-Tao, Gong, Shu-Xi, Zhang, Yu-Jie, Zha, Feng-Tao, Ling, Jin, Wan, Tingting
Format Journal Article
LanguageEnglish
Published Cambridge Electromagnetics Academy 2009
Online AccessGet full text
ISSN1559-8985
1070-4698
1559-8985
DOI10.2528/PIER09060902

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Abstract In this paper, a hybrid algorithm combined method of moments (MoM) with particle swarm optimization (PSO) is used to realize low radar cross section (RCS) array synthesis. Both the scattering factor and the radiation factor are involved in the proposed objective function to achieve the promising dipole array with a reduced RCS and satisfied radiation performance. To improve the optimization efficiency, radiation constraint conditions are adopted to avoid unnecessary scattering calculation. The symmetric matrix and block treatment are also used to fill the MoM impedance matrix. The optimization results show that the proposed algorithm is able to achieve RCS reduction of 5.5 dB for dipole array.
AbstractList In this paper, a hybrid algorithm combined method of moments (MoM) with particle swarm optimization (PSO) is used to realize low radar cross section (RCS) array synthesis. Both the scattering factor and the radiation factor are involved in the proposed objective function to achieve the promising dipole array with a reduced RCS and satisfied radiation performance. To improve the optimization efficiency, radiation constraint conditions are adopted to avoid unnecessary scattering calculation. The symmetric matrix and block treatment are also used to fill the MoM impedance matrix. The optimization results show that the proposed algorithm is able to achieve RCS reduction of 5.5 dB for dipole array.
Author Gong, Shu-Xi
Wang, Wen-Tao
Zha, Feng-Tao
Wan, Tingting
Ling, Jin
Zhang, Yu-Jie
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