DocumentCode :
1244990
Title :
Isotropic fading vector broadcast Channels:The scalar upper bound and loss in degrees of freedom
Author :
Jafar, Syed Ali ; Goldsmith, Andrea J.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of California Irvine, CA, USA
Volume :
51
Issue :
3
fYear :
2005
fDate :
3/1/2005 12:00:00 AM
Firstpage :
848
Lastpage :
857
Abstract :
We propose a scalar upper bound on the capacity region of the isotropic fading vector broadcast channel in terms of the capacity region of a scalar fading broadcast channel. The scalar upper bound is applicable to the broad class of isotropic fading broadcast channels regardless of the distribution of the users´ channel magnitudes, the distribution of the additive noise experienced by each user, or the amount of channel knowledge available at the receiver. Using this upper bound, we prove the optimality of the Alamouti scheme in a broadcast setting, extend the recent results on the capacity of nondegraded, fading scalar broadcast channels to nondegraded fading vector broadcast channels, and determine the capacity region of a fading vector Gaussian broadcast channel with channel magnitude feedback. We also provide an example of a Rayleigh-fading broadcast channel with no channel state information available to the receiver (CSIR), where the bound on the capacity region obtained by a naive application of the scalar upper bound is provably loose, because it fails to account for the additional loss in degrees of freedom due to lack of channel knowledge at the receiver. A tighter upper bound is obtained by separately accounting for the loss in degrees of freedom due to lack of CSIR before applying the scalar upper bound.
Keywords :
Gaussian channels; Rayleigh channels; antenna arrays; broadcast channels; channel capacity; radio receivers; Alamouti scheme; CSIR; Rayleigh channel; additive noise; channel capacity; channel state information; degrees-of-freedom; isotropic fading vector broadcast channel; multiple antennas; radio receiver; scalar upper bound; vector Gaussian channel; Additive noise; Broadcasting; Channel state information; Fading; Feedback; Rayleigh channels; Receiving antennas; Transmitters; Transmitting antennas; Upper bound; Broadcast channel; channel capacity; channel state information; degrees of freedom; fading channels; multiple antennas;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2004.842621
Filename :
1397926
Link To Document :
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