Title
Iterative Decision-Aided Compensation of Phase Noise in Millimeter-Wave SC-FDE Systems.
Abstract
In this letter, we propose a novel decision-aided phase noise (PHN) compensation scheme for 60 GHz millimeter-wave single-carrier frequency-domain equalization (SC-FDE) systems. The proposed scheme works in an iterative manner. During each iteration, we first chop each received data block into several equi-length sub-blocks, and use the data decision obtained from the previous iteration to estimate the PHN in each sub-block. Then we use the PHN estimate newly obtained to compensate for the PHN effect. Last, we conduct FDE and data decision for each received data block. With increasing iterations, the length of sub-blocks is gradually decreased, which leads to increasingly accurate PHN estimation and data decision. It is shown through simulations compliant with the IEEE 802.11ad standard that the proposed scheme outperforms the counterpart of similar complexity and can effectively alleviate the adverse effect of PHN.
Year
DOI
Venue
2016
10.1109/LCOMM.2016.2542127
IEEE Communications Letters
Keywords
Field
DocType
Phase noise,Estimation,Standards,Frequency-domain analysis,Multipath channels,Complexity theory,Demodulation
Multipath channels,Frequency domain,Demodulation,Extremely high frequency,Telecommunications,Equalization (audio),Computer science,SC-FDE,Phase noise,Block (data storage),Real-time computing,Electronic engineering
Journal
Volume
Issue
ISSN
20
5
1089-7798
Citations 
PageRank 
References 
1
0.37
8
Authors
3
Name
Order
Citations
PageRank
Xiantao Cheng1348.09
Niannian Lou221.10
Bo Yuan310.37