Applied Physics A

, 122:34 | Cite as

Design and implementation of waveguide bandpass filter using complementary metaresonator

Invited Paper
Part of the following topical collections:
  1. Advanced Metamaterials and Nanophotonics

Abstract

During past few years, designing of complementary metamaterials-based microwave devices have extensively increased. In this paper, passband filter for rectangular waveguide is designed using complementary symmetric split-ring resonator (CSSRR). By varying different geometrical parameters of CSSRR, the passband frequency and bandwidth can be varied. Effect of design parameter on quality factor of filter is also calculated. By appropriate choice of CSSRR geometrical parameters, a filter is proposed which gives passband of 2 GHz. The results are calculated numerically using HFSS 14.0.

Keywords

Resonant Frequency Insertion Loss Transverse Electric Return Loss Rectangular Waveguide 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

Notes

Acknowledgments

The authors would like to acknowledge Faculty of Electronic Engineering, Ghulam Ishaq Khan Institute of Engineering Sciences and Technology (GIKI), for supporting this work. The authors are also thankful to Dr. Adnan Noor (Assistant Professor GIKI) for technical help in HFSS 14.0.

References

  1. 1.
    C.A. Balanis, Advanced Engineering Electromagnetics (John Wiley and Sons. Inc, New York, 2012)Google Scholar
  2. 2.
    D.M. Pozar, Microwave Engineering (Wiley, Hoboken, 2012)Google Scholar
  3. 3.
    D. Oloumi et al., Size reduction and bandwidth enhancement of a waveguide bandpass filter using fractal-shaped irises. IEEE Antennas Wirel. Propag. Lett. 8, 1214–1217 (2009)CrossRefADSGoogle Scholar
  4. 4.
    D. Budimir et al., Waveguide filters using T-shaped resonators. Electron. Lett. 47, 38–40 (2011)CrossRefGoogle Scholar
  5. 5.
    M. Khalaj Amirhosseini, Microwave filters using waveguides filled by multi-layer dielectric. Prog. Electromagn. Res. 66, 105–110 (2006)CrossRefGoogle Scholar
  6. 6.
    X.Q. Lin et al., Metamaterial-inspired waveguide filters with compact size and sharp skirt selectivity. J. Electromagn. Waves Appl. 27(2), 224–232 (2013)CrossRefGoogle Scholar
  7. 7.
    J.B. Pendry, A.J. Holden, D.J. Robbins, Magnetism from conductors and enhanced nonlinear phenomena. IEEE Trans. Microw. Theory Tech. 47(11), 2075–2084 (1999)CrossRefADSGoogle Scholar
  8. 8.
    R. Marqus et al., Left-handed-media simulation and transmission of EM waves in subwavelength split-ring-resonator-loaded metallic waveguides. Phys. Rev. Lett. 89(18), 183901–183905 (2002)CrossRefADSGoogle Scholar
  9. 9.
    S. Hrabar, J. Bartolic, Z. Sipus, Waveguide miniaturization using uniaxial negative permeability metamaterial. IEEE Trans. Antennas Propag. 53(1), 110–119 (2005)CrossRefADSGoogle Scholar
  10. 10.
    N. Ortiz et al., Complementary split-ring resonator for compact waveguide filter design. Microw. Opt. Technol. Lett. 46(1), 88–92 (2005)CrossRefGoogle Scholar
  11. 11.
    F. Falcone, T. Lopetegi, J.D. Baena, M. Sorolla, Effective negative-\(\epsilon\) stropband microstrip lines based on complementary split ring resonators. IEEE Microw. Wirel. Compon. Lett. 14(6), 280–282 (2004)CrossRefGoogle Scholar
  12. 12.
    H. Bahrami et al., Using complementary split ring resonators (CSRR) to design bandpass waveguide filters. in Proceedings of Asia-Pacific Microwave Conference, pp. 749–753 (2007)Google Scholar
  13. 13.
    N. Suntheralingam, D. Budimir, Compact waveguide bandpass filters with enhanced stopband performance. in Proceedings of Asia-Pacific Microwave Conference, pp. 1–4 (2008)Google Scholar
  14. 14.
    S. Fallahzadeh et al., A novel dual-band stopband waveguide filter using split ring resonator. Prog. Electromagn. Res. Lett. 12, 133–139 (2009)CrossRefGoogle Scholar
  15. 15.
    R. Rezaiesarlak et al., A dual behavior resonator structure for designing multi-band bandpass waveguide filters. in Proceedings of Asia-Pacific Microwave Conference, pp. 1110–1113 (2010)Google Scholar
  16. 16.
    O. Glubokov, D. Budimir, Compact E-plane doublet structures for modular filter design. in Proceedings of European Microwave Conference, pp. 1253–1256 (2010)Google Scholar
  17. 17.
    Y. Liu, H. Ma, A broadband bandpass rectangular waveguide filter based on metamaterials. in International Workshop on Metamaterials (Meta), pp. 1–4 (2012)Google Scholar
  18. 18.
    S. Stefanovski, M. Potrebic, D. Tosic, Design and analysis of bandpass waveguide filters using novel complementary split ring resonators. in 11th International Conference on Telecommunications in Modern Satellite, Cable and Broadcasting Services (TELSIKS), pp. 257–260 (2013)Google Scholar
  19. 19.
    L. Yechou, A. Tribak, M. Kacim, J. Zbitou, A. Mediavilla, Ku-band waveguide band-pass filter with iris radius. in International Conference on Multimedia Computing and Systems (ICMCS), pp. 1435–1438 (2014)Google Scholar
  20. 20.
    Y. Cai, L. Yang, Y. Zhang, W. Cao, Z. Qian, HMSIW bandstop filter loaded with half complementary split-ring resonator. Electron. Lett. 51(8), 632–633 (2015)CrossRefGoogle Scholar

Copyright information

© Springer-Verlag Berlin Heidelberg 2015

Authors and Affiliations

  1. 1.School of Electrical EngineeringThe University of FaisalabadFaisalabadPakistan
  2. 2.Faculty of Electronic EngineeringGhulam Ishaq Khan Institute of Engineering Sciences and TechnologyTopiPakistan
  3. 3.College of EngineeringTaibah UniversityMedinaKingdom of Saudi Arabia

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