Title :
Body-Insensitive Multimode MIMO Terminal Antenna of Double-Ring Structure
Author :
Kun Zhao ; Shuai Zhang ; Ishimiya, Katsunori ; Zhinong Ying ; Sailing He
Author_Institution :
Sch. of Electr. Eng., KTH (R. Inst. of Technol.), Stockholm, Sweden
Abstract :
In this paper, we propose a novel multimode multi-input multi-output (MIMO) antenna system composed of a dual-element MIMO cellular antenna and dual-element MIMO Wi-Fi antenna for mobile terminal applications. The antenna system has a double-ring structure and can be integrated with the metal frame of mobile terminals. With the multimode excitation, the MIMO cellular antenna can operate at 830-900 MHz, 1700-2200 MHz, and 2400-2700 MHz, for 2G, 3G, and LTE bands, respectively. The MIMO Wi-Fi antenna can cover two Wi-Fi bands from 2.4 to 2.5 GHz and from 5.2 to 5.8 GHz. The effect of a user´s body on the MIMO cellular antenna is investigated on CTIA standard phantoms and a real user. Since our antenna mainly operates in the loop mode, it has a much lower efficiency loss than conventional mobile antennas in both talking and data modes. Our theoretical analysis and experiments have shown that our design has low body loss and an attractive industrial design.
Keywords :
MIMO communication; UHF antennas; cellular radio; microwave antenna arrays; wireless LAN; 2G band; 3G band; CTIA standard phantom; LTE band; body-insensitive multimode multiinput multioutput terminal antenna system; double-ring structure; dual element MIMO cellular antenna system; dual-element MIMO Wi-Fi antenna system; frequency 1700 MHz to 2200 MHz; frequency 2400 MHz to 2700 MHz; frequency 5.2 GHz to 5.8 GHz; frequency 830 MHz to 900 MHz; mobile terminal antenna application; multimode excitation; IEEE 802.11 Standards; MIMO; Metals; Mobile antennas; Mobile communication; Body effect; LTE; MIMO antenna; Wi-Fi; body effect; long term evolution (LTE); loop antenna; mobile terminal; multi-input multi-output (MIMO) antenna;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2408617