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Articles

The Design and Investigation of a Super Wideband Antenna with Dual-Band Notch Characteristics for MIMO Application

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References

  • D. Tran. “On the design of a super wideband antenna,” Ultra wideband. Boris Lembrikov, editor, InTech; 2010.
  • S. Singhal, and A. K. Singh, “CPW-fed hexagonal Sierpinski super wideband fractal antenna,” IET Microw. Antennas Propag., Vol. 10, no. 15, pp. 1701–7, 2016.
  • J. Yeo, and J. I. Lee, “Coupled-sectorial-loop antenna with circular sectors for super wideband applications,” Microw. Opt. Technol. Lett., Vol. 56, no. 7, pp. 1683–9, 2014.
  • D. Tran, A. Szilagyi, I. E. Lager, P. Aubry, L. P. Ligthart, and A. Yarovoy. “A super wideband antenna,” in Antennas and Propagation (EUCAP), Proceedings of the 5th European Conference on. IEEE, 2011, April, pp. 2656–60.
  • S. Singhal, and A. K. Singh, “Modified star-star fractal (MSSF) super-wideband antenna,” Microw. Opt. Technol. Lett., Vol. 59, no. 3, pp. 624–30, 2017.
  • R. Malik, P. Singh, H. Ali, and T. Goel, “A star shaped superwide band fractal antenna for 5G applications,” in 2018 3rd International Conference for Convergence in Technology (I2CT). IEEE, 2018, April, pp. 1–6.
  • P. Okas, A. Sharma, and R. K. Gangwar, “Circular base loaded modified rectangular monopole radiator for super wideband application,” Microw. Opt. Technol. Lett., Vol. 59, no. 10, pp. 2421–8, 2017.
  • P. Okas, A. Sharma, and R. K. Gangwar, “Super-wideband CPW fed modified square monopole antenna with stabilized radiation characteristics,” Microw. Opt. Technol. Lett., Vol. 60, no. 3, pp. 568–75, 2018.
  • CÁ Figueroa-Torres, et al., “A novel fractal antenna based on the Sierpinski structure for super wide band applications,” Microw. Opt. Technol. Lett., Vol. 59, no. 5, pp. 1148–53, 2017.
  • H. D. Oskouei, and A. Mirtaheri. “A monopole super wideband microstrip antenna with band-notch rejection,” in Progress in Electromagnetics Research Symposium-Fall (PIERSFALL), 2017. IEEE, 2017, November, pp. 2019–24.
  • M. Manohar, R. S. Kshetrimayum, and A. K. Gogoi, “Super wideband antenna with single band suppression,” Int. J. Microw. Wirel. Technol., Vol. 9, no. 1, pp. 143, 2017.
  • G. Saxena, Y. K. Awasthi, and P. Jain, “High isolation and high gain superwideband (0.33–10 THz) MIMO antenna for THz applications,” Optik, Vol. 223, pp. 165335, 2020.
  • S. Singhal, “Four element ultra-wideband fractal multiple-input multipleoutput antenna,” Microw. Opt. Technol. Lett., Vol. 61, no. 12, pp. 2811–8, 2019.
  • C. Yu, S. Yang, Y. Chen, W. Wang, L. Zhang, B. Li, and L. Wang, “A super wideband and high isolation MIMO antenna system using a wind millshaped decoupling structure,” IEEE Access, Vol. 8, pp. 115767–77, 2020.
  • A. Abdelraheem, H. Elregaily, A. A. Mitkees, and M. Abdalla, “A hybrid isolation in two-element directive UWB MIMO antenna,” IETE J. Res., Vol. 66, pp. 1–10, Oct. 2020.
  • M. Alibakhshikenari, M. Khalily, B. S. Virdee, C. H. See, R. A. Abd-Alhameed, and E. Limiti, “Mutual-coupling isolation using embedded metamaterial EM bandgap decoupling slab for densely packed array antennas,” IEEE Access, Vol. 7, pp. 51827–40, 2019.
  • M. Shehata, M. S. Said, and H. Mostafa, “Dual notched band quad-element MIMO antenna with multitone interference suppression for IR-UWB wireless applications,” IEEE Trans. Antennas Propag., Vol. 66, no. 11, pp. 5737–46, 2018.
  • K. Srivastava, A. Kumar, B. K. Kanaujia, S. Dwari, and S. Kumar, “A CPW-fed UWB MIMO antenna with integrated GSM band and dual band notches,” Int. J. RF Microw. Comput. Aided Eng., Vol. 29, pp. e21433, 2019.
  • I. Suriya, and R. Anbazhagan, “Inverted-A based UWB MIMO antenna with tripleband notch andimproved isolation for WBAN applications,” AEU Int. J. Electron. Commun., Vol. 99, pp. 25–33, 2019.
  • K. Srivastava, G. Varshney, and R. Singh, “Compact ultra-wideband monopole antenna with tunable notch bandwidth/frequency ratio,” Frequenz, no. April, pp. 1–12, 2021. DOI: 10.1515/freq-2020-0173.
  • S. Gotra, G. Varshney, V. S. Pandey, and R. S. Yaduvanshi, “Super-wideband multi-input–multi-output dielectric resonator antenna,” IET Microw. Antennas Propag., Vol. 14, no. 1, pp. 21–7, 2019. DOI: 10.1049/iet-map.2018.6112.
  • V. Thakur, N. aglan, and S. D. Gupta, “Side edge printed eight-element compact MIMO antenna array for 5G smart phone applications,” J. Electromagn. Waves Appl., Vol. 36, no. 12, pp. 1685–701, 2022.
  • N. Jaglan, S. D. Gupta, and M. S. Sharawi, “18 element massive MIMO/diversity 5G smartphones antenna design for sub-6 GHz LTE bands 42/43 applications,” IEEE Open J. Antennas Propag., Vol. 2, pp. 533–45, 2021.
  • N. Jaglan, S. D. Gupta, B. K. Kanaujia, and M. S. Sharawi, “10 element sub-6-GHz multi-band double-T based MIMO antenna system for 5G smartphones,” IEEE Access, Vol. 9, pp. 118662–72, 2021.
  • S. Agrawal, and M. S. Parihar, “Design and development of patch loaded slot antenna for super wide band communication system and MIMO application,” Wirel. Pers. Commun., Vol. 130, pp. 2853–68, 2023.
  • Electronic Communications Committee (ECC): ‘The European table of frequency allocations and applications’, ERC Report, 25, 2014.

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