DocumentCode :
1253637
Title :
Reduced Complexity Power Allocation Strategies for MIMO Systems With Singular Value Decomposition
Author :
Zanella, Alberto ; Chiani, Marco
Author_Institution :
DEI, Univ. of Bologna, Bologna, Italy
Volume :
61
Issue :
9
fYear :
2012
Firstpage :
4031
Lastpage :
4041
Abstract :
We consider wireless multiple-input-multiple-output (MIMO) systems in fading environments, with frequency flat fading, channel state information at both transmitter and receiver sides, and linear precoding based on singular value decomposition (SVD). The optimal solution for these MIMO SVD systems, in terms of achievable rate, requires water filling to optimally allocate power to the different channel eigenmodes. Alternatively, reduced complexity power allocation methods can be employed. We propose two power allocation techniques that only require statistical knowledge of the channel matrix coefficients and do not need knowledge of the instantaneous values of the channel state. To study these power allocation methods, we introduce a new expression for the exact distribution of the eigenvalues of Wishart matrices, where the probability density function of the lth largest eigenvalue is given as a sum of terms of the form xβe-x δ. The expression is here used, in the context of MIMO SVD systems, to obtain the achievable rate for both zero-outage and nonzero-outage strategies. We show that low-complexity methods have performance very similar to water-filling methods.
Keywords :
MIMO communication; eigenvalues and eigenfunctions; fading channels; probability; radio receivers; radio transmitters; singular value decomposition; MIMO systems; Wishart matrices eigenvalues; channel eigenmode; channel matrix coefficients; channel state information; fading environments; frequency flat fading; multiple input multiple output systems; optimal power allocation; probability density function; radio receiver; radio transmitter; reduced complexity power allocation methods; reduced complexity power allocation strategy; singular value decomposition; statistical knowledge; Closed-form solutions; Eigenvalues and eigenfunctions; Fading; MIMO; OFDM; Resource management; Transmitters; Multiple-input–multiple-output (MIMO) systems; Wishart matrices; power allocation; singular value decomposition (SVD);
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2012.2210575
Filename :
6252078
Link To Document :
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