Analysis of Multiuser Diversity Gain Achieved by MIMO Systems Through User Scheduling Based on Limited Feedback in Dense Cellular Networks

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3

초록

We examine the sum rate of multiple-input multiple-output broadcast channels in which the locations of base stations (BS) and users follow independent homogeneous Poisson point processes. Each BS schedules appropriate users for spatial multiplexing based on partial channel state information provided by users. In this scenario, we develop a suitable channel quality information (CQI) for user scheduling, which attains a nearly optimal multiuser diversity gain. Using the proposed CQI, we determine the growth rate of the sum rate achieved with limited feedback in densely populated cellular environments. In comparison to the single-cell scenario, the growth rate is slightly diminished due to inter-cell interference caused by the dense BS topology. Nevertheless, we demonstrate that the gap in net sum spectral efficiencies achieved through user scheduling with the proposed CQI remains significantly large, even within dense cellular networks, provided that each BS can employ the optimal number of feedback bits. Thus, we also investigate the optimal feedback rate that maximizes the net sum spectral efficiency.

키워드

MIMO; user scheduling; multiuser diversity; stochastic geometry; limited feedback; STOCHASTIC GEOMETRY; WIRELESS NETWORKS; CHANNELS; DESIGN
제목
Analysis of Multiuser Diversity Gain Achieved by MIMO Systems Through User Scheduling Based on Limited Feedback in Dense Cellular Networks
저자
Kong, Jae-Ik; Min, Moonsik
DOI
10.1109/LWC.2023.3322164
발행일
2024-01
유형
Article
저널명
IEEE Wireless Communications Letters
권
13
호
1
페이지
113 ~ 117