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High Gain Linear 1×4 X-slotted Microstrip Patch Antenna Array for 5G Mobile Technology

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A linear 1×4 antenna array built on the Rogers RT/Duroid 5880 substrate is proposed in this paper to acquire high gain for 5G applications. The proposed design resonates at 38 GHz, i.e. in the Ka-band region, and has small patch dimensions of 5.5×2 mm. The design is simulated using CST studio. The main element consists of X-slot that provides a gain of 6.98 dB with the return loss of –24.25 dB whereas a linear array of 4 elements is made which is fed by the 50Ω m-line using the corporate feeding network which yields a gain of 13.84 dB, as well as the return loss is –15.72 dB. The centreto-centre spacing (d) of elements in the antenna array is 0.8λ.
Rocznik
Tom
Strony
50--55
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • ICFAI University, Dehradun, Uttarakhand, India
autor
  • Model Institute of Engineering and Technology, Jammu, India
Bibliografia
  • [1] T. S. Rappaport et al., „Millimeter wave mobile communications for 5G cellular: It will work!", IEEE Access, vol. 1, pp. 335-349, 2013 (doi: 10.1109/ACCESS.2013.2260813).
  • [2] P. Zhouyue and F. Khan, „An introduction to millimeter-wave mobile broadband systems", IEEE Commun. Mag.", vol. 49, pp. 101-107, 2011 (doi: 10.1109/MCOM.2011.5783993).
  • [3] J. Zhang, X. Ge, Q. Li, M. Guizani, and Y. Zhang, „5G millimeter-wave antenna array: Design and challenges", IEEE Wirel. Commun., vol. 24, no. 2, pp. 106-112, 2017 (doi: 10.1109/MWC.2016.1400374RP).
  • [4] M. M. M. Ali, O. M. Haraz, S. Alshebeili, and A.-R. Sebak, „Design of broadband and dual-band printed slot antennas for the fth generation (5G) mobile and wireless communications", in Proc. 32nd Nat. Radio Science Conf. NRSC 2015, Cairo, Egypt, 2015.
  • [5] M. Agiwal, A. Roy, and N. Saxena, „Next generation 5G wireless networks: A comprehensive survey", IEEE Commun. Surv. Tutor., vol. 18, no. 3, pp. 1617-1655, 2016 (doi: 10.1109/COMST.2016.2532458).
  • [6] T.-Y. Wu and T. Chang, „Interference reduction by millimeter wave technology for 5G based green communications", IEEE Access, vol. 4, pp. 10228-10234, 2016 (doi: 10.1109/ACCESS.2016.2602318).
  • [7] N. Kaur and S. Malhotra, „A review on signicance of design parameters of microstrip patch antennas" in Proc. 5th In. Conf. on Wirel. Netw. and Embedd. Syst. WECON 2016, Rajpura, India 2016 (doi: 10.1109/WECON.2016.7993491).
  • [8] M. Li and K.-M. Luk, „ Low-cost wideband micro strip antenna array for 60-GHz applications", IEEE Trans. on Antenn. and Propag., vol. 62, no. 6, pp. 3012-3018, 2014 (doi: 10.1109/TAP.2014.2311994).
  • [9] W. Hong, K.-H. Baek, and S. Ko, „Millimeter-wave 5G antennas for smartphones: Overview and experimental demonstration", IEEE Trans. on Antenn. and Propag., vol. 65, no. 2, pp. 6250-6261, 2017 (doi: 10.1109/TAP.2017.2740963).
  • [10] J. Saini and S. K. Agarwal, „Design a single band microstrip patch antenna at 60 GHz millimeter wave for 5G applications", in Proc. Int. Conf. on Comp., Commun. and Electron. Comptelix 2017, Jaipur, India, 2017, pp. 227-230 (doi: 10.1109/COMPTELIX.2017.8003969).
  • [11] M. K. Mohamed Amin, M. F. Mansor, N. Misran, and M. T. Islam „28/38 GHz dual band slotted patch antenna with proximity coupled-feed for 5G Communication", in Proc. Int. Symp. on Antenn. And Propag. ISAP 2017, Phuket, Thailand, 2017 (doi: 10.1109/ISANP.2017.8228897).
  • [12] D. Imran et al., „Millimeter wave microstrip patch antenna for 5G mobile communication", in Proc. Int. Conf. on Engin. and Emerg. Technol. ICEET 2018, Lahore, Pakistan, 2018 (doi: 10.1109/ICEET1.2018.8338623).
  • [13] A. Alreshaid et al., „A compact millimeter-wave slotantenna array for 5G standards", in Proc. IEEE 4th Asia-Pacic Conf. on Antenn. and Propag. APCAP 2015, Kuta, Indonesia, 2015 (doi: 10.1109/APCAP.2015.7374281).
  • [14] M. I. Khattak et al., „Elliptical slot circular patch antenna array with dual band behaviour for future 5G mobile communication networks", Progr. in Electromag. Res. C, vol. 89, pp. 133-147, 2019 (doi: 10.2528/PIERC18101401).
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3f3cd9a0-e720-472f-997f-a2e3d945d1bf
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