DocumentCode :
845873
Title :
Optimal bandwidth allocation for the data and feedback channels in MISO-FDD systems
Author :
Xie, Yongzhe ; Georghiades, Costas N. ; Rohani, Kamyar
Author_Institution :
Prediction Co., Santa Fe, NM, USA
Volume :
54
Issue :
2
fYear :
2006
Firstpage :
197
Lastpage :
203
Abstract :
In frequency-division duplex (FDD) systems, channel-state information (CSI) is estimated by the receiver and then fed back to the transmitter through a feedback link, which inevitably requires additional bandwidth and power. In this letter, we jointly study optimal bandwidth allocation between the data channel, modeled as a flat-fading multiple-input single-output (MISO) channel, and the feedback channel for maximum average throughput in the data channel using a beamforming scheme. We consider two models of the partial CSI at the transmitter (CSIT): the noisy CSIT, modeled as jointly Gaussian with the actual channel state, and the quantized CSIT. In the first model, we use distortion-rate theory to relate the CSIT accuracy to the feedback-link bandwidth. In the second model, we derive a lower bound on the achievable rate of the data channel based on the ensemble of a set of random quantization codebooks. We show that in the MISO flat-fading channel case, beamforming based on feedback CSI can achieve an average rate larger than the capacity without CSIT under a wide range of mobility conditions.
Keywords :
bandwidth allocation; fading channels; feedback; frequency division multiplexing; transmitters; MISO-FDD systems; beamforming scheme; channel-state information; data channel; distortion rate theory; feedback channels; feedback link bandwidth; flat fading multiple input single output channel; frequency division duplex systems; optimal bandwidth allocation; random quantization codebooks; Array signal processing; Bandwidth; Channel allocation; Feedback; Frequency estimation; Gaussian noise; Power system modeling; Quantization; Throughput; Transmitters; Beamforming; channel-state information (CSI); frequency-division duplex (FDD); multiple-antenna system;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2005.863794
Filename :
1599590
Link To Document :
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