DocumentCode
3394175
Title
Information capacity and power control in single-cell multiuser communications
Author
Knopp, R. ; Humblet, P.A.
Author_Institution
Mobile Commun. Group, Inst. Eurecom, Sophia Antipolis, France
Volume
1
fYear
1995
fDate
18-22 Jun 1995
Firstpage
331
Abstract
We consider a power control scheme for maximizing the information capacity of the uplink in single-cell multiuser communications with frequency-flat fading, under the assumption that the users attenuations are measured perfectly. Its main characteristics are that only one user transmits over the entire bandwidth at any particular time instant and that the users are allocated more power when their channels are good, and less when they are bad. Moreover, these features are independent of the statistics of the fading. Numerical results are presented for the case of single-path Rayleigh fading. We show that an increase in capacity over a perfectly-power controlled (Gaussian) channel can be achieved, especially if the number of users is large. By examining the bit error-rate with antipodal signalling, we show the inherent diversity in multiuser communications over fading channels
Keywords
Rayleigh channels; cellular radio; channel capacity; diversity reception; error statistics; fading; land mobile radio; power control; radio links; radiowave propagation; telecommunication control; Gaussian channel; antipodal signalling; attenuation measurement; bandwidth; bit error rate; channel capacity; diversity; fading channels; frequency flat fading; information capacity; multiuser channel; numerical results; perfectly-power controlled channel; power control; single-cell multiuser communications; single-path Rayleigh fading; uplink; Attenuation measurement; Bandwidth; Base stations; Downlink; Fading; Mobile communication; Multiuser channels; Power control; Power measurement; Rayleigh channels;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 1995. ICC '95 Seattle, 'Gateway to Globalization', 1995 IEEE International Conference on
Conference_Location
Seattle, WA
Print_ISBN
0-7803-2486-2
Type
conf
DOI
10.1109/ICC.1995.525188
Filename
525188
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