DocumentCode
1327745
Title
Enabling Code Diversity for Mobile Radio Channels using Long-Range Fading Prediction
Author
Wu, Yiyue ; Jia, Tao ; Calderbank, Robert ; Duel-Hallen, Alexandra ; Hallen, Hans
Author_Institution
UBS Securities LLC, Stamford, CT, USA
Volume
11
Issue
12
fYear
2012
fDate
12/1/2012 12:00:00 AM
Firstpage
4362
Lastpage
4371
Abstract
Code diversity integrates space-time coding with beamforming by using a small number of feedback bits to select from a family of space-time codes. Different codes lead to different induced channels at the receiver, where Channel State Information (CSI) is used to instruct the transmitter how to choose the code. Feedback can be combined with sub-optimal low complexity decoding of the component codes to match Maximum-Likelihood (ML) decoding performance of any individual code in the family. It can also be combined with ML decoding of the component codes to improve performance beyond ML decoding performance of any individual code. Prior analysis of code diversity did not take into account the effect of the mobile speed and the delay in the feedback channel. This paper demonstrates the practicality of code diversity in space-time coded systems by showing that performance gains based on instantaneous feedback are largely preserved when long-range prediction of time-varying correlated fading channels is employed to compensate for the effect of the feedback delay. To maintain prediction accuracy for realistic SNR, noise reduction that employs oversampled pilots is used prior to fading prediction. We also propose a robust low pilot rate method that utilizes interleaving to improve the spectral efficiency. Simulations are presented for two channel models: the conventional Jakes model and a realistic physical channel model where the parameters associated with the reflectors vary in time and the arrival rays have different strengths and asymmetric arrival angles.
Keywords
decoding; delays; fading channels; feedback; mobile radio; space-time codes; CSI; Jakes model; beamforming; channel state information; code diversity; feedback channel; feedback delay; long-range fading prediction; maximum-likelihood decoding; mobile radio channels; space-time coding; spectral efficiency; time-varying correlated fading channels; Decoding; Delays; Encoding; Fading channels; Receiving antennas; Signal to noise ratio; Fading channels; channel state information; code diversity; feedback delay; long-range channel prediction; space-time codes;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2012.101712.111884
Filename
6340385
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