DocumentCode
346075
Title
On multiple access communications using spatial diversity
Author
Diggavi, Suhas N.
Author_Institution
Inf. Sci. Res. Center, AT&T Shannon Labs., Florham Park, NJ, USA
fYear
1999
fDate
1999
Firstpage
480
Abstract
Information-theoretic results have shown significant gains in transmission rate over fading channels using multiple transmitter and receiver antenna (spatial) diversity. We review some of these results and show that these gains could also be achieved using simpler receiver structures. We then examine the rates achievable in a multiuser environment, i.e. a multiple access fading channel. The symmetric rate per user is studied and we show that even with simple linear detectors one could obtain non-zero symmetric rates for fading channels (when we have a large number of users). Next we observe that the symmetric rate decreases with the number of users sharing the spectrum. Therefore, one can define a “user capacity” which refers to the number of users who can be supported at a desired symmetric rate per user. We evaluate the user capacity as a function of the number of transmit and receive antennas and observe the benefits of using spatial diversity, from this point of view
Keywords
cellular radio; diversity reception; fading channels; information theory; multi-access systems; receiving antennas; transmitting antennas; fading channels; information-theoretic results; linear detectors; multiple access communications; multiple access fading channel; receiver antenna; receiver structures; spatial diversity; symmetric rate per user; transmission rate; transmitter antenna; user capacity; Data models; Detectors; Fading; Helium; Laboratories; Multiaccess communication; Multiuser detection; Receiving antennas; Time division multiple access; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communications and Networking Conference, 1999. WCNC. 1999 IEEE
Conference_Location
New Orleans, LA
ISSN
1525-3511
Print_ISBN
0-7803-5668-3
Type
conf
DOI
10.1109/WCNC.1999.797872
Filename
797872
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