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Electromagnetics

A Hybrid Fractal Metamaterial Antenna for Wireless Applications with Gain Enhancement

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References

  • R. Z. Wu, P. Wang, Q. Zheng, and R. P. Li, “Compact CPW-fed triple band antenna for diversity applications,” Electron Lett., Vol. 51, pp. 735–6, 2015.
  • Y. F. Cao, S. W. Cheung, and T. I. Yuk, “A multiband slot antenna for GPS/WiMAX/WLAN systems,” IEEE Trans Antennas Propag., Vol. 63, no. 3, pp. 952–8, 2015.
  • R. K. Saraswat, and M. Kumar, “A frequency band reconfigurable UWB antenna for high gain applications,” Prog. Electromagn. Res. B, Vol. 64, pp. 29–45, 2015.
  • T. Ali, S. Pathan, and R. C. Biradar, “A multiband antenna loaded with metamaterial and slots for GPS/WLAN/WiMAX applications,” Micro. Opt. Techno. Lett., Vol. 60, pp. 79–85, 2018.
  • H. X. Xu, G. M. Wang, Y. Y. Lv, M. Q. Qi, X. Gao, and S. Ge, “Multi frequency monopole antennas by loading metamaterial transmission lines with dual-shunt branch circuit,” Prog. Electromagn. Res., Vol. 137, pp. 703–25, 2013.
  • M. V. Rao, B. T. P. Madhav, T. Anil kumar, and B. P. Nadh, “Metamaterial inspired quad band circularly polarized antenna for WLAN/ISM/bluetooth/WiMAX and satellite communication applications,” AEU-Int. J. Electro. Commun., Vol. 97, pp. 229–41, 2018.
  • T. Ali, and R. C. Biradar, “A compact multiband antenna using λ/4 rectangular stub loaded with metamaterial for IEEE 802.11 N and IEEE 802.16 E,” Microw. Opt. Technol. Lett., Vol. 59, no. 5, pp. 1000–6, 2017.
  • J. Kukreja, C. D. Kumar, and C. R. Kumar, “CPW fed miniaturized dual-band short-ended metamaterial antenna using modified split-ring resonator for wireless application,” Int. J. RF Microw. Comput. Aid Eng., Vol. 27, no. 8, pp. 1–7, 2017.
  • R. K. Saraswat, and M. Kumar, “A metamaterial hepta-band antenna for wireless applications with specific absorption rate reduction,” Int. J. RF Microw. Comput. Aid Eng., Vol. 29, no. 10, pp. 1–12, 2019.
  • T. Ali, A. M. Saadh, and R. C. Biradar, “A fractal quad-band antenna loaded with L-shaped slot and metamaterial for wireless applications,” Int. J. Microw. Wireless Technol., Vol. 10, no. 7, pp. 826–34, 2018.
  • V. Rajeshkumar, and S. Raghavan, “SRR based polygon ring penta-band fractal antenna for GSM/WLAN/WiMAX/ITU band applications,” Microw. Opt. Technol. Lett., Vol. 57, no. 6, pp. 1301–5, 2015.
  • C. Elavarasi, and T. Shanmuganantham, “Multiband SRR loaded Koch star fractal antenna,” Alex. Engg J., Vol. 57, pp. 1549–55, 2018.
  • B. H. Ahmed, and H. Nornikman, “Fractal microstrip antenna with Minkowski island split ring resonator for broad band application,” IEEE Int. RF Microw Conf., Vol. 2013, pp. 214–8, 2013.
  • R. K. Saraswat, and M. Kumar, “Miniaturized slotted ground UWB antenna loaded with metamaterial for WLAN and WiMAX applications,” Prog. Electro. Res. B, Vol. 65, pp. 65–80, 2016.
  • R. K. Saraswat, and M. Kumar, “A vertex-fed hexa-band frequency reconfigurable antenna for wireless applications,” Int. J. RF Microw. Comput. Aided Eng., Vol. 29, no. 10, pp. 1–13, 2019.
  • N. Kushwaha, and R. Kumar, “Design of slotted ground hexagonal microstrip patch antenna and gain improvement with FSS screen,” Progr. Electromagn. Res. B, Vol. 51, pp. 177–99, 2013.
  • Computer simulation technology microwave studio (CST MWS). Available: http://www.cst.co.
  • Y. Kumar, and S. Singh, “A compact multiband hybrid fractal antenna for multi standard mobile wireless application,” Wire Pers. Commun., Vol. 84, pp. 57–67, 2015.
  • H. Chen, J. Zhang, Y. Bai, Y. Luo, L. Ran, Q. Jiang, and J. A. Kong, “Experimental retrieval of the effective parameters of metamaterials based on a waveguide method,” Opt. Express, Vol. 14, no. 26, pp. 12944–9, 2006.
  • C. Saha, and J. Y. Siddiqui, “Versatile CAD formulation for estimation of the resonant frequency and magnetic polarizability of circular split ring resonators,” Int. J. RF Microw. Comput. Aided Eng., Vol. 21, pp. 432–8, 2011.
  • D. R. Smith, S. Schultz, P. Markos, and C. M. Soukoulis, “Determination of negative permittivity and permeability of metamaterials from reflection and transmission coefficients,” Phys. Rev. B, Vol. 65, pp. 195104–109, 2002.
  • R. J. Langley, and E. A. Parker, “Equivalent-circuit model for arrays of square loops,” Electron. Lett., Vol. 18, pp. 294–6, 1982.
  • Y. C. Chung, K. W. Lee, I. P. Hong, M. G. Lee, H. J. Chun, and J. G. Yook, “Simple prediction of FSS radome transmission characteristics using an FSS equivalent circuit model,” IEICE Electron Expr., Vol. 8, no. 2, pp. 89–95, 2011.
  • N. Kushwaha, R. Kumar, R. V. S. Ram Krishna, and T. Oli, “Design and analysis of new compact UWB frequency selective surface and its equivalent circuit,” Prog. Electromagn. Res. C, Vol. 46, pp. 31–39, 2014.
  • R. K. Saraswat, and M. Kumar, “A quad band metamaterial miniaturized antenna for wireless applications with gain enhancement,” Wirel. Pers. Commun., Vol. 114, pp. 3595–612, 2020.
  • R. K. Saraswat, and M. Kumar, “Implementation of hybrid fractal metamaterial inspired frequency band reconfigurable multiband antenna for wireless applications,” Int. J. RF Microw. Comput. Aided Eng., Vol. 30, no. 9, pp. 1–19, 2020.
  • P. P. Singh, P. K. Goswami, S. K. Sharma, and G. Goswami, “Frequency reconfigurable multiband antenna for IoT applications in WLAN, Wi-Max, and C-band,” Prog. Electromagn. Res. C., Vol. 102, pp. 149–162, 2020.
  • G. Bharti, and J. S. Sivia, “A design of multiband nested square shaped ring fractal antenna with circular ring elements for wireless applications,” Prog. Electromagn Res. C., Vol. 108, pp. 115–25, 2021.
  • A. Kaur, and P. K. Malik, “Multiband elliptical patch fractal and defected ground structures microstrip patch antenna for wireless applications,” Prog. Electromagn. Res. B., Vol. 91, pp. 157–73, 2021.

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