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Automatic Design of FSS with Arbitrary Pattern  

Shim, Hyung-Won (BK21 Mechatronics Group at Chungnam National University)
Lee, Ji-Hong (BK21 Mechatronics Group at Chungnam National University)
Seo, Il-Song (Agency for Defense Development)
Kim, Geun-Hong (Agency for Defense Development)
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Abstract
This paper proposes the efficient system for automatic design of FSS(Frequency Selective Surface) with periodic pattern and frequency characteristics specified by operator. The proposed system derives optimal design parameters through tool for analysis of FSS with arbitrary pattern, DB(Data Base) implemented from limited simulation and measurement data of FSS, and GA(Genetic Algorithm) for optimizing design parameters. FSS analysis tool consists of two analysis tools. One is the simulator for analysis of monolayer FSS that using moment method, another is the tool with approximated analysis method of FSS with dielectric layer. Given pattern configuration and characteristics specified by operators, the DB system searches the best matching FSS, and provides initial genes to GA from the searched parameters, which drastically reduces running time of GA for finding the FSS design parameters. In this paper, the proposed design system is verified through simulation and measurement about FSS with various patterns.
Keywords
FSS; Various patterns; DB; Genetic algorithm; Approximated analysis method;
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  • Reference
1 C.C.Chen, 'Transmission Through a Conducting Screen Perforated Periodically with Apertures', IEEE Trans. Microwave Theory Tech, MTT-18, pp. 677-632, 1970
2 C.C.Chen, 'Scattering by a Two-Dimension Periodic Array of Conducting Plates', IEEE Trans. Antennas Propagation, AP-18, pp. 660-665, 1970
3 J. A. Reed, 'Frequency Selective Surfaces with Multiple Periodic Elements', Ph.D. Dissertation, The University of Texas at Dallas, December 1997
4 N. Farahat and R. Mittra, 'Analysis of frequency selective surfaces using the finite difference time domain (FDTD) method' Proc. IEEE. Antennas and Propagation Society International Symposium, vol.2, pp. 568-571, 2002
5 C.C.Chen, 'Diffraction of Electromagnetic Waves by a Conducting Screen Perforated Periodically with Circular Holes', IEEE Trans. Microwave Theory Tech., pp. 475- 481, 1971
6 서일성, '주파수 선택적 투과 E-glass/Epoxy 적층판 설계에 관한 연구', 박사학위논문, KAIST, 2004
7 Jihong Lee, Hyungwon Shim, Fillyoub Lee, Geun-Hong Kim, and Il-Sung Seo, 'Optimal FSS Design by Genetic Algorithm', IASTD -Antennas, Radar, and Wave Propagation, pp.115-120, 2006
8 Maurizio Bozzi, Luca Perregrini, Jochen Weinzierl, and Carsten Winnewisser, 'Efficient Analysis of Quasi-Optical Filters by a Hybrid MoM/BI-RME Method', IEEE Trans. on Antennas and Propagation, vol. 49, no. 7, pp.1054-1064, 2001   DOI   ScienceOn
9 S. Chakravarty, R. Mttra, and N.R. Williams, 'Application of a Microgenetic Algorithm(MGA) to the Design of Broad-Band Microwave Absorbers Using Multiple Frequency Selective Surface Screens Buried in Dielectrics', Proc. IEEE Trans. Antennas and Propagation, vol.50, March 2002
10 Craig Scott, 'The Spectral Domain Method in Electromagnetics', Artech House, pp. 1- 39, 1989
11 장병탁, '유전 알고리즘 이론 및 응용', 대한전자공학회지, 제22권 11호, 60-70쪽, 1995
12 S. Chakravarty and R. Mittra, 'Application of the micro-genetic algorithm to the design of spatial filters with frequency selective surfaces embedded in dielectric media', Proc. IEEE Trans. Electromagnetic Compatibility, vol.44, pp. 338-346, May 2002   DOI   ScienceOn
13 Ben.A.Munk, 'Frequency Selective Sur- faces : Theory and Design', John Wiley & Sons Inc, 2000
14 서호진, 김흥수, '유전자 알고리즘을 이용한 개구결합 마이크로스트립 안테나 설계', 대한전자공학회 하계종합학술대회 논문집, 207- 210쪽, 1999