A Design Method for Synthesizing a Dual-Passband FSS for Wi-Fi Using Equivalent Circuit Model

作者

  • Yuan Xu School of Information and Electronics Beijing Institute of Technology, Beijing, 100081, China
  • Mang He School of Information and Electronics Beijing Institute of Technology, Beijing, 100081, China

关键词:

Equivalent circuit method, frequency selective surface, genetic algorithm, Wi-Fi

摘要

In this letter, a dual-passband frequency selective surface (FSS) at Wi-Fi operation bands is presented. The proposed structure is implemented by two-dimensional periodic array of double square slots on single dielectric layer, which can be used to isolate the intensive care rooms of hospitals from insignificant signals, but supports Wi-Fi features, enabling doctors to acquire the patients’ health condition at any time. The design procedure is based on the equivalent circuit method (ECM) combined with the genetic algorithm (GA) curve-fitting, which aims at providing the initial dimension parameters of FSS. Ultimately, the calculated results from the ECM are compared with the numerical results of the HFSS optimization, and the measured frequency response of the fabricated FSS covers all the Wi-Fi frequency bands, which verify the reliability of this design.

##plugins.generic.usageStats.downloads##

##plugins.generic.usageStats.noStats##

参考

S. I. Sohail, “Wi-Fi transmission and multi-band shielding using single-layer frequency selective surface,” 2016 IEEE International Symposium on Antennas and Propagation (APSURSI), Fajardo, pp. 963-964, 2016.

B. A. Munk, Frequency Selective Surface: Theory and Design. New York: Wiley-Interscience, pp. 1- 22, 2000.

D. Hamzaoui, T. P. Vuong, F. Djahli, and G. I. Kiani, “Novel compact dual-band artificial magnetic conductors for Wi-Fi applications,” The 8th European Conference on Antennas and Propagation (EuCAP 2014), The Hague, pp. 2397-2400, 2014.

I. Ullah, X. Zhao, D. Habibi, and G. Kiani, “Transmission improvement of UMTS and Wi-Fi signals through energy saving glass using FSS,” WAMICON 2011 Conference Proceedings, Clearwater Beach, FL, pp. 1-5, 2011.

D. Ferreira, I. Cuinas, and R. F. S. Caldeirinha, “Dual-band single-layer quarter ring frequency selective surface for Wi-Fi applications,” IET Microw. Antennas Propag., vol. 10, pp. 435-441, 2016.

X. Sheng, J. Fan, N. Liu, and C. Zhang, “A miniaturized dual-band FSS with controllable frequency resonances,” IEEE Microwave and Wireless Components Lett., vol. 27, no. 10, pp. 915-917, Oct. 2017.

S. Ünaldı, S. Çimen, G. Çakır, and U. E. Ayten, “A novel dual-band ultrathin FSS with closely settled frequency response,” IEEE Antennas and Wireless Propag. Lett., vol. 16, pp. 1381-1384, 2017.

M. Z. Joozdani and M. K. Amirhosseini, “Equivalent circuit model for the frequencyselective surface embedded in a layer with constant conductivity,” IEEE Trans. Antennas and Propag., vol. 65, no. 2, pp. 705-712, Feb. 2017.

D. Ferreira, R. F. S. Caldeirinha, I. Cuiñas, and T. R. Fernandes, “Square loop and slot frequency selective surfaces study for equivalent circuit model optimization,” IEEE Trans. Antennas and Propag., vol. 63, no. 9, pp. 3947-3955, Sept. 2015.

O. Luukkonen and C. Simovski, “Simple and accurate analytical model of planar grids and highimpedance surfaces comprising metal strips or patches,” IEEE Trans. Antennas and Propag., vol. 56, no. 6, pp. 1624-1632, June 2008.

R. J. Langley and E. A. Parker, “Equivalent circuit model for arrays of square loops,” in Electronics Letters, vol. 18, no. 7, pp. 294-296, 1 Apr. 1982.

C. K. Lee and R. J. Langley, “Equivalent-circuit models for frequency-selective surfaces at oblique angles of incidence,” in IEE Proceedings H - Microwaves, Antennas and Propagation, vol. 132, no. 6, pp. 395-399, Oct. 1985.

G. H. Sung, K. W. Sowerby, M. J. Neve, and A. G. Williamson, “A frequency-selective wall for interference reduction in wireless indoor environments,” in IEEE Antennas and Propagation Magazine, vol. 48, no. 5, pp. 29-37, Oct. 2006.

N. Liu, X. Sheng, C. Zhang, and D. Guo, “Design of frequency selective surface structure with high angular stability for radome application,” IEEE Antennas Wireless Propag. Lett., vol. 17, no. 1, pp. 138-141, Jan. 2018.

N. Liu, X. Sheng, C. Zhang, J. Fan, and D. Guo, “A design method for synthesizing wideband bandstop FSS via its equivalent circuit model,” IEEE Antennas Wireless Propag. Lett., vol. 16, pp. 2721- 2725, 2017.

G. Manara, A. Monorchio, and R. Mittra, “Frequency selective surface design based on genetic algorithm,” Electronics Letters, vol. 35, pp. 1400-1401, 1999.

E. F. Kent, B. Doken, and M. Kartel, “A new equivalent circuit based FSS design method by using genetic algorithm,” International Conference on Engineering Optimization, pp. 1-4, 2010.

Z. Li, P. Y. Papalambros, and J. L. Volakis, “Frequency selective surface design by integrating optimization algorithms with fast full wave numerical methods,” IEE Proc. Microw. Antennas Propag., vol. 149, no. 3, pp. 175-180, 2002.

X. Xiong, W. Hong, Z. Zhao, L. Deng, and S. Li, “Wi-Fi band-stop FSS for increased privacy protection in smart building,” 2015 IEEE 6th International Symposium on Microwave, Antenna, Propagation, and EMC Technologies (MAPE), Shanghai, pp. 826-828, 2015.

R. J. Langley and E. A. Parker, “Double-square frequency-selective surfaces and their equivalent circuit,” Electronics Letters, vol. 19, no. 17, pp. 675-677, 18 Aug. 1983.

M. Yan, J. Wang, and H. Ma, “A tri-band, highly selective, bandpass FSS using cascaded multilayer loop arrays,” IEEE Trans. Antennas and Propag., vol. 64, no. 5, pp. 2046-2049, May 2016.

F. Costa, A. Monorchio, and G. Manara, “An overview of equivalent circuit modeling techniques of frequency selective surfaces and metasurfaces,” Applied Computational Electromagnetics Society Journal, no. 29, pp. 960, 2014.

H. Li, Q. Cao, C. Yang, and Y. Wang, “Design and analysis of a frequency selective radome (FSR) with wideband absorbing properties,” 2016 IEEE International Workshop on Electromagnetics: Applications and Student Innovation Competition (iWEM), Nanjing, pp. 1-3, 2016.

A. J. Chipperfield and P. J. Fleming, “The MATLAB genetic algorithm toolbox,” IEE Colloquium on Applied Control Techniques Using MATLAB, London, UK, pp. 10/1-10/4, 1995.

Y. Rahmat-Samii, Electromagnetic Optimization by Genetic Algorithms. Wiley Series in Microwave and Optical Engineering, 1999.

##submission.downloads##

已出版

2019-10-01

栏目

General Submission