TY - JOUR
T1 - Isolation Enhancement in Dual-Band Monopole Antenna for 5G Applications
AU - Wang, Wen
AU - Wu, Yongle
AU - Wang, Weimin
AU - Yang, Yuhao
N1 - Publisher Copyright:
© 2004-2012 IEEE.
PY - 2021/6
Y1 - 2021/6
N2 - This brief presents a novel design of high-isolation dual-band antenna with a close distance for 5G applications. The proposed antenna consists of two symmetrical monopole antenna elements. Two resonance frequencies of the monopole antenna are independently tunable. The defected ground structure (DGS) and grounded branches are loaded to reduce mutual coupling of the lower band by changing the current distribution on the ground plane. And a T-shaped parasitic element is placed between the two antenna elements. The parasitic element introduces an inverse path for mutual coupling cancellation, which greatly increases the isolation of the higher band. As a result, the proposed antenna achieves 5G dual-band of 3.409-3.601 and 4.76-5.04 GHz (S11S22<-10 dB, S12S21<-26 dB). Compared with the single monopole antenna, the bands of the proposed antenna don't shift and the impedance matching is improved. With the decoupling structure, the isolations are -29 and -41.4 dB at 3.5 and 4.85 GHz, respectively. In addition, the proposed antenna also has the advantages of small size, more flexibility, and simple structure.
AB - This brief presents a novel design of high-isolation dual-band antenna with a close distance for 5G applications. The proposed antenna consists of two symmetrical monopole antenna elements. Two resonance frequencies of the monopole antenna are independently tunable. The defected ground structure (DGS) and grounded branches are loaded to reduce mutual coupling of the lower band by changing the current distribution on the ground plane. And a T-shaped parasitic element is placed between the two antenna elements. The parasitic element introduces an inverse path for mutual coupling cancellation, which greatly increases the isolation of the higher band. As a result, the proposed antenna achieves 5G dual-band of 3.409-3.601 and 4.76-5.04 GHz (S11S22<-10 dB, S12S21<-26 dB). Compared with the single monopole antenna, the bands of the proposed antenna don't shift and the impedance matching is improved. With the decoupling structure, the isolations are -29 and -41.4 dB at 3.5 and 4.85 GHz, respectively. In addition, the proposed antenna also has the advantages of small size, more flexibility, and simple structure.
KW - 5G applications
KW - antenna
KW - dual-band decoupling
KW - high-isolation
KW - multiple-input multiple-output (MIMO)
UR - https://www.scopus.com/pages/publications/85097162284
U2 - 10.1109/TCSII.2020.3040164
DO - 10.1109/TCSII.2020.3040164
M3 - 文章
AN - SCOPUS:85097162284
SN - 1549-7747
VL - 68
SP - 1867
EP - 1871
JO - IEEE Transactions on Circuits and Systems II: Express Briefs
JF - IEEE Transactions on Circuits and Systems II: Express Briefs
IS - 6
M1 - 9269414
ER -