研究目的
Investigating a multi-pair two-way massive MIMO amplify-and-forward full-duplex relay system over Ricean fading channels with imperfect CSI.
研究成果
The study concludes that with properly selected power scaling schemes, the effects of channel estimation error, self-loop interference, inter-user interferences, and noise can be eliminated as the number of relay antennas tends to infinity. The multi-pair two-way FDR outperforms the multi-pair two-way HDR in SE and EE for large M. The proposed low-complexity power control scheme significantly improves SE.
研究不足
The study assumes imperfect CSI and does not account for the instantaneous knowledge of GRR. The performance is analyzed under specific conditions such as Ricean fading channels and may not generalize to other channel models.
1:Experimental Design and Method Selection:
The study presents low-complexity transceiver designs at the relay based on zero-forcing reception/zero-forcing transmission (ZFR/ZFT) and maximum-ratio combining/maximum-ratio transmission (MRC/MRT) processing with imperfect CSI.
2:Sample Selection and Data Sources:
The system model includes multiple pairs of full-duplex users exchanging information through a full-duplex relay with a very large number of antennas.
3:List of Experimental Equipment and Materials:
The study involves simulations and theoretical analyses without specific mention of physical equipment.
4:Experimental Procedures and Operational Workflow:
The methodology includes deriving asymptotic expressions of the end-to-end SINR, analyzing asymptotic SE and EE, and proposing a low-complexity power control scheme.
5:Data Analysis Methods:
The analysis involves Monte-Carlo simulations to validate theoretical results and compare performance under different power scaling schemes.
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