DocumentCode :
3303464
Title :
Compact metamaterial antenna array for long term evolution (LTE) handset application
Author :
Lopez, Norberto ; Lee, Cheng-Jung ; Gummalla, Ajay ; Achour, Maha
Author_Institution :
Rayspan Corp., San Diego, CA
fYear :
2009
fDate :
2-4 March 2009
Firstpage :
1
Lastpage :
4
Abstract :
In the digital world, Moore´s Law states the number of transistors on Integrated Circuits (ICs) has been doubling every two years since 1965. While these ICs occupy only 10% of the wireless communication device Moore´s Lawarea, the remaining 90%, referred to as RF Front-End Model (FEM), consists of a collection of discrete passive and active components such as antennas, filters, diplexer, duplexers, couplers, power combiner/splitter, and power amplifiers. While these powerful ICs enable effective implementation of multiple input multiple output (MIMO) digital processing, the main issue of MIMO RF FEM implementation in small devices such as handsets still remains unsolved. Without such a full solution, network providers cannot deploy next generation wireless broadband networks, such as 3GPP long term evolution (LTE) networks, that can sustain tens of Mbps throughput with mobility. This paper addresses this specific problem by presenting an LTE MIMO air interface solution for handsets using metamaterial designs, which offer small, low-cost, and low-profile antennas printed directly on PCB for easy integration and simple manufacturing - all critical factors for rapid deployment and commercial success. The proposed metamaterial MIMO array consists of dual resonance antennas occupying lambda0/10 times lambda0/41 times lambda0/387 volume at center frequency 771MHz of the LTE band 746-796MHz. The performances of two antenna array configurations with spacing of lambda0/13 and lambda0/5 are studied while quantifying its near-filed and far-field channel correlation.
Keywords :
3G mobile communication; MIMO communication; antenna arrays; integrated circuits; metamaterials; mobile handsets; printed circuits; 3GPP long term evolution networks; MIMO array; Moore Law; PCB; RF front-end model; compact metamaterial antenna array; dual resonance antennas; far-field channel correlation; frequency 746 GHz to 796 GHz; integrated circuits; long term evolution handset application; near-filed channel correlation; wireless communication device; Antenna accessories; Antenna arrays; Digital integrated circuits; Long Term Evolution; MIMO; Metamaterials; Moore´s Law; Radio frequency; Telephone sets; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antenna Technology, 2009. iWAT 2009. IEEE International Workshop on
Conference_Location :
Santa Monica, CA
Print_ISBN :
978-1-4244-4395-6
Electronic_ISBN :
978-1-4244-4396-3
Type :
conf
DOI :
10.1109/IWAT.2009.4906933
Filename :
4906933
Link To Document :
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