DocumentCode
3608901
Title
Full Duplex-Assisted Intercell Interference Cancellation in Heterogeneous Networks
Author
Shengqian Han ; Chenyang Yang ; Pan Chen
Author_Institution
Sch. of Electron. & Inf. Eng., Beihang Univ., Beijing, China
Volume
63
Issue
12
fYear
2015
Firstpage
5218
Lastpage
5234
Abstract
This paper studies the suppression of cross-tier intercell interference (ICI) generated by a macro base station (MBS) to pico user equipments (PUEs) in heterogeneous networks (HetNets). Different from existing ICI avoidance schemes such as enhanced ICI cancellation (eICIC) and coordinated beamforming, which generally operate at the MBS, we propose a full duplex (FD)-assisted ICI cancellation (fICIC) scheme, which can operate at each pico BS (PBS) individually and is transparent to the MBS. The basic idea of the fICIC is to apply FD technique at the PBS such that the PBS can send the desired signals and forward the listened cross-tier ICI simultaneously to PUEs. We first consider the narrowband single-user case, where the MBS serves a single macro UE and each PBS serves a single PUE. We obtain the closed-form solution of the optimal fICIC scheme, and analyze its asymptotical performance in ICI-dominated scenario. We then investigate the general narrowband multiuser case, where both MBS and PBSs serve multiple UEs. We devise a low-complexity algorithm to optimize the fICIC aimed at maximizing the downlink sum rate of the PUEs subject to user fairness constraint. Finally, the generalization of the fICIC to wideband systems is investigated. Simulations validate the analytical results and demonstrate the advantages of the fICIC on mitigating cross-tier ICI.
Keywords
array signal processing; intercarrier interference; interference suppression; picocellular radio; HetNets; ICI avoidance schemes; MBS; PUE; coordinated beamforming; cross-tier intercell interference suppression; eICIC; enhanced ICI cancellation; full duplex-assisted intercell interference cancellation; heterogeneous networks; macro base station; pico user equipments; Downlink; High definition video; Interference; Narrowband; Receiving antennas; Signal to noise ratio; CoMP; Full duplex; Heterogeneous networks; Inter-cell interference cancellation; OFDM; eICIC;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2015.2494046
Filename
7305788
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