TY - GEN
T1 - Design of Umbrella shape single element patch antenna with high gain and high efficiency for 5G wireless communication in 28 GHz
AU - Ahmad, Iftikhar
AU - Houjun, Sun
AU - Ali, Qasim
AU - Samad, Abdul
N1 - Publisher Copyright:
© 2020 IEEE.
PY - 2020/1
Y1 - 2020/1
N2 - 5G communication system requires a low profile, lightweight, high Gain, and simple structure Antenna to ensure reliability, mobility and high efficiency, a novel shape low profile High gain and high efficiency patch antenna for 28 GHz 5G wireless communication is presented in this paper. The proposed antenna is designed on a compact Rogers Substrate Rt-5880 with overall dimensions of 25 × 19 × 0.5 mm with relative permittivity r of 2.2 and loss tangent δ value, 0.0009. the proposed design provides a high gain of 7.88 dBi at 28 GHz without employing any complex gain achievement techniques like EBG, CRR and SRR, coupled Split ring and metamaterial plates and is more than 92% efficient. Impedance bandwidth of the proposed Antenna ranges from 27.673-28.118GHz. where S 11 leq-10 dB. the Simulated results of radiation patterns are directional. multi-beam directional radiation pattern is one of the distinct features of the proposed Antenna. a very high gain Ultra-wideband can be obtained by aligning linear and planner array. The proposed antenna is designed and optimized using commercial 3D full-wave software, viz. CST microwave studio 2018. having good gain advocates ease in feasibility of this Antenna for 5G MIMIO Applications due to the simple design structure, ease in fabrication and low cost the proposed design is considered as an excellent choice for 5G mm Wave communication.
AB - 5G communication system requires a low profile, lightweight, high Gain, and simple structure Antenna to ensure reliability, mobility and high efficiency, a novel shape low profile High gain and high efficiency patch antenna for 28 GHz 5G wireless communication is presented in this paper. The proposed antenna is designed on a compact Rogers Substrate Rt-5880 with overall dimensions of 25 × 19 × 0.5 mm with relative permittivity r of 2.2 and loss tangent δ value, 0.0009. the proposed design provides a high gain of 7.88 dBi at 28 GHz without employing any complex gain achievement techniques like EBG, CRR and SRR, coupled Split ring and metamaterial plates and is more than 92% efficient. Impedance bandwidth of the proposed Antenna ranges from 27.673-28.118GHz. where S 11 leq-10 dB. the Simulated results of radiation patterns are directional. multi-beam directional radiation pattern is one of the distinct features of the proposed Antenna. a very high gain Ultra-wideband can be obtained by aligning linear and planner array. The proposed antenna is designed and optimized using commercial 3D full-wave software, viz. CST microwave studio 2018. having good gain advocates ease in feasibility of this Antenna for 5G MIMIO Applications due to the simple design structure, ease in fabrication and low cost the proposed design is considered as an excellent choice for 5G mm Wave communication.
KW - Gain
KW - millimetre wave
KW - multi-beam directional radiation
KW - radiation efficiency
UR - http://www.scopus.com/inward/record.url?scp=85085471811&partnerID=8YFLogxK
U2 - 10.1109/IBCAST47879.2020.9044577
DO - 10.1109/IBCAST47879.2020.9044577
M3 - Conference contribution
AN - SCOPUS:85085471811
T3 - Proceedings of 2020 17th International Bhurban Conference on Applied Sciences and Technology, IBCAST 2020
SP - 710
EP - 713
BT - Proceedings of 2020 17th International Bhurban Conference on Applied Sciences and Technology, IBCAST 2020
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 17th International Bhurban Conference on Applied Sciences and Technology, IBCAST 2020
Y2 - 14 January 2020 through 18 January 2020
ER -