DocumentCode :
29008
Title :
Parametrization Based Limited Feedback Design for Correlated MIMO Channels Using New Statistical Models
Author :
Godana, Bruhtesfa E. ; Ekman, Torbjorn
Author_Institution :
Dept. of Electron. & Telecommun., Norwegian Univ. of Sci. & Technol., Trondheim, Norway
Volume :
12
Issue :
10
fYear :
2013
fDate :
Oct-13
Firstpage :
5172
Lastpage :
5184
Abstract :
Parametrization of unitary matrices using Givens rotations has been used for limited feedback in multiple-input multiple-output (MIMO) systems. Feedback based on these rotations has been adopted in IEEE 802.11n and other upcoming standards. However, the probability distributions of Givens rotations is not known for correlated channels, forcing the use of uniform quantization. In this paper, novel probability density function (PDF) models, based on beta and wrapped Cauchy distributions, are proposed for Givens rotations in correlated MIMO channels. Empirical distributions and goodness-of-fit tests show that the proposed distributions characterize the spatial correlation behavior with good accuracy. Moreover, it is shown that the distributions known in the literature for uncorrelated MIMO channels are only special cases. Distributions of Givens rotations are useful to understand the behavior of singular vectors of correlated channels. In this paper, the PDF models are utilized for bit allocation and optimized codebook design. Simulations show that precoding using the proposed codebooks achieves significant performance improvement, in terms of mean square error and sum rate, as compared to using uniform codebooks. It is also shown that the bit allocations proposed in this paper reduce to that of IEEE 802.11n standard when the MIMO channel is not spatially correlated.
Keywords :
MIMO communication; codes; correlation methods; matrix algebra; mean square error methods; statistical distributions; wireless LAN; wireless channels; IEEE 802.11n; MIMO systems; PDF models; beta Cauchy distributions; bit allocations; correlated MIMO channels; mean square error; multiple-input multiple-output systems; optimized codebook design; parametrization based limited feedback design; probability density function models; spatial correlation behavior; sum rate; uncorrelated MIMO channels; unitary matrices; wrapped Cauchy distributions; Correlation; MIMO; Matrix decomposition; Probability density function; Quantization (signal); Transmitting antennas; Vectors; Givens rotations; MIMO systems; codebook design; correlated mimo; limited feedback; singular vectors;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2013.092013.130045
Filename :
6612899
Link To Document :
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