TY - GEN
T1 - A Dual band Metamaterial Antenna for 5G and Higher Satellite band Applications
AU - Ali, Tanweer
AU - Subhash, B. K.
AU - Prasad, K. Durga
AU - Biradar, Rajashekhar C.
N1 - Publisher Copyright:
© 2018 IEEE.
PY - 2018/10
Y1 - 2018/10
N2 - A highly compact (volume of only 8 × 8 × 1.6 = 102mm3) metamaterial antenna operating at 26 GHz (5G) and 33.2 GHz (higher satellite band) is presented. The structure of antenna is embedded with a symmetrical rectangular radiator and a metamaterial Rectangular Split Ring Resonator (RSRR). The symmetrical rectangular radiator controls the band at 26 GHz and metamaterial RSRR controls the band at 33.2 GHz. The antenna has S11<-10dB bandwidth of 1600 MHz, centered at 26 GHz and 600 MHz centered at 33.2 GHz. Highly compact size, good gain and radiation efficiency are obtained at the targeted 5G and higher satellite band frequencies.
AB - A highly compact (volume of only 8 × 8 × 1.6 = 102mm3) metamaterial antenna operating at 26 GHz (5G) and 33.2 GHz (higher satellite band) is presented. The structure of antenna is embedded with a symmetrical rectangular radiator and a metamaterial Rectangular Split Ring Resonator (RSRR). The symmetrical rectangular radiator controls the band at 26 GHz and metamaterial RSRR controls the band at 33.2 GHz. The antenna has S11<-10dB bandwidth of 1600 MHz, centered at 26 GHz and 600 MHz centered at 33.2 GHz. Highly compact size, good gain and radiation efficiency are obtained at the targeted 5G and higher satellite band frequencies.
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U2 - 10.1109/I2CT42659.2018.9058289
DO - 10.1109/I2CT42659.2018.9058289
M3 - Conference contribution
AN - SCOPUS:85084149141
T3 - 2018 4th International Conference for Convergence in Technology, I2CT 2018
BT - 2018 4th International Conference for Convergence in Technology, I2CT 2018
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 4th International Conference for Convergence in Technology, I2CT 2018
Y2 - 27 October 2018 through 28 October 2018
ER -