DocumentCode :
3443128
Title :
Experimental results and transceiver hardware design for fixed broadband wireless non-line-of-sight transmission: up to 1 gbit/sec in 4.6 MHz
Author :
Martone, Max
Author_Institution :
WJ Commun. Inc., San Jose, CA, USA
fYear :
2001
fDate :
2001
Firstpage :
13
Lastpage :
16
Abstract :
We describe and discuss the results of some experimental outdoor field trials which demonstrate-for the first time-the hardware feasibility of fixed broadband wireless radio links with spectral efficiencies in excess of 50 bit/sec/Hz in severe multipath frequency selective environments (non line-of-sight). Custom cost-effective hardware has allowed data transmission in the range 60-960 Mbit/sec occupying a bandwidth of 2-4-5 MHz at MMDS frequencies (≃2.5 GHz). We also introduce a new modeling methodology inspired by basic theoretical physics which gives a different and practical perspective to the spatio-temporal transmission problem. Previously reported hardware experiments using the same concept have addressed the simpler problem of indoor communications in a 30 kHz cellular channel. The developed technology has the potential of making practical and cost effective the deployment of high capacity microwave data communications equipment for point to point and point to multipoint systems
Keywords :
array signal processing; broadband networks; cellular radio; data communication; indoor radio; microwave links; microwave propagation; multipath channels; radio networks; space-time adaptive processing; transceivers; 2 to 4 MHz; 30 kHz; 60 to 960 Mbit/s; MMDS frequencies; bandwidth; cellular channel; custom cost-effective hardware; data transmission; experimental results; fixed broadband wireless NLOS transmission; fixed broadband wireless radio links; high capacity communications equipment; indoor communications; microwave data communications equipment; modeling methodology; multipath frequency selective environments; nonline-of-sight transmission; outdoor field trials; point to multipoint systems; point to point systems; spatio-temporal processing; spatio-temporal transmission; spectral efficiency; transceiver hardware design; Bandwidth; Costs; Data communication; Frequency; Hardware; Indoor communication; Microwave technology; Physics; Radio link; Transceivers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radio and Wireless Conference, 2001. RAWCON 2001. IEEE
Conference_Location :
Waltham, MA
Print_ISBN :
0-7803-7189-5
Type :
conf
DOI :
10.1109/RAWCON.2001.947483
Filename :
947483
Link To Document :
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