DocumentCode :
3778559
Title :
Asymptotic SEP analysis for correlated large MIMO channels with ZF-DF detection
Author :
Zheng Dong;Jian-Kang Zhang
Author_Institution :
Department of ECE, McMaster University, Hamilton, ON, L8S 4K1, Canada
fYear :
2015
Firstpage :
227
Lastpage :
231
Abstract :
In this paper, we consider correlated multiple-antenna communication systems having M transmitter antennas and N receiver antennas (M ≤ N) with a zero-forcing (ZF) decision-feedback (DF) detector. We assume that the full knowledge of channel state information is available at the receiver and only the first- and the second-order channel statistics are known at the transmitter. By scaling up the antenna array size of both terminals without bound for such multiple-antenna systems, we propose a novel method based on the Szegö´s theorem and the well-known limit limx→∞(1 + 1/x)x = e to analyze the asymptotic behaviour on the error performance of an equal-diagonal QRS precoded large MIMO system when employing an abstract Toeplitz correlation model. This new approach bears a simple expression with a fast convergence rate and thus, is efficient and effective for error performance evaluation. Then, the impact of channel correlation on the error performance is studied for different correlation coefficients. In addition, an explanation of this approach in terms of the entropy power of the channel is also provided. Finally, computer simulations are carried out to verify our analysis in comparison with a uniform power allocation strategy.
Keywords :
"MIMO","Receiving antennas","Transmitting antennas","Covariance matrices","Detectors"
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (ChinaCom), 2015 10th International Conference on
Type :
conf
DOI :
10.1109/CHINACOM.2015.7497942
Filename :
7497942
Link To Document :
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