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Yang, Hyun Jong
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Optimal Multiuser Diversity in Multi-Cell MIMO Uplink Networks: User Scaling Law and Beamforming Design

Author(s)
Jung, Bang ChulKim, Su MinShin, Won-YongYang, Hyun Jong
Issued Date
2017-08
DOI
10.3390/e19080393
URI
https://scholarworks.unist.ac.kr/handle/201301/22822
Fulltext
http://www.mdpi.com/1099-4300/19/8/393
Citation
ENTROPY, v.19, no.8, pp.393
Abstract
We introduce a distributed protocol to achieve multiuser diversity in a multicell multiple-input multiple-output (MIMO) uplink network, referred to as a MIMO interfering multiple-access channel (IMAC). Assuming both no information exchange among base stations (BS) and local channel state information at the transmitters for the MIMO IMAC, we propose a joint beamforming and user scheduling protocol, and then show that the proposed protocol can achieve the optimal multiuser diversity gain, i.e., KM log (SNR log N), as long as the number of mobile stations (MSs) in a cell, N, scales faster than SNRKM-L/1-epsilon for a small constant epsilon > 0, where M, L, K, and SNR denote the number of receive antennas at each BS, the number of transmit antennas at each MS, the number of cells, and the signal-to-noise ratio, respectively. Our result indicates that multiuser diversity can be achieved in the presence of intra-cell and inter-cell interference even in a distributed fashion. As a result, vital information on how to design distributed algorithms in interference-limited cellular environments is provided.
Publisher
MDPI AG
ISSN
1099-4300
Keyword (Author)
interference managementuser schedulingmulti-cell networksbeamformingmultiple antennas
Keyword
INTERFERENCE ALIGNMENTWIRELESSCHANNELSANTENNAS

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