Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems

Massive multiple-input multiple-output (MIMO) is considered as a promising technique in wireless communication systems, which contains cellular base stations equipped with a very large number of antennas to serve multiple users. However, the performance of massive MIMO is limited by the impact of pi...

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Main Authors: Hieu Trong Dao, Sunghwan Kim
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8252924/
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spelling doaj-bcbbd6b95cf24a82b7fb86e2e74c99e82021-03-29T20:30:38ZengIEEEIEEE Access2169-35362018-01-0164599460710.1109/ACCESS.2018.27898608252924Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO SystemsHieu Trong Dao0Sunghwan Kim1https://orcid.org/0000-0003-1762-5915Coding and Information Theory Lab, School of Electrical Engineering, University of Ulsan, Ulsan, South KoreaCoding and Information Theory Lab, School of Electrical Engineering, University of Ulsan, Ulsan, South KoreaMassive multiple-input multiple-output (MIMO) is considered as a promising technique in wireless communication systems, which contains cellular base stations equipped with a very large number of antennas to serve multiple users. However, the performance of massive MIMO is limited by the impact of pilot contamination due to inter-cell interference (ICI). In conventional massive MIMO systems, pilot sequences are randomly assigned to users without any further consideration. In this paper, a vertex graph coloring-based pilot assignment (VGC-PA) algorithm is proposed in conjunction with the existing post-processing discrete Fourier transform (DFT) filtering channel estimation to mitigate the ICI between users with the same pilot sequence in the channel estimation process to improve the capacity of the whole system. Specifically, we propose a metric to measure the potential ICI strength between any two users in the system based on their angle of arrival, correlation, and distances to construct an ICI graph, where each user is regarded as a node. This ICI graph denotes the potential ICI strength relationship among all users in the system. Then, we propose a VGC-PA algorithm to mitigate the ICI relationship between users with the same pilot sequences by assigning different pilots to connected users with high ICI metric based on some criteria. After the pilot assignment process, we apply the existing post-processing DFT filtering in the channel estimation process. The simulation results show the significant improvement of our proposed VGC-PA algorithm compared with existing methods.https://ieeexplore.ieee.org/document/8252924/Massive MIMOpilot contaminationpilot assignmentinter-cell interferencevertex graph coloring-based
collection DOAJ
language English
format Article
sources DOAJ
author Hieu Trong Dao
Sunghwan Kim
spellingShingle Hieu Trong Dao
Sunghwan Kim
Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
IEEE Access
Massive MIMO
pilot contamination
pilot assignment
inter-cell interference
vertex graph coloring-based
author_facet Hieu Trong Dao
Sunghwan Kim
author_sort Hieu Trong Dao
title Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
title_short Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
title_full Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
title_fullStr Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
title_full_unstemmed Vertex Graph-Coloring-Based Pilot Assignment With Location-Based Channel Estimation for Massive MIMO Systems
title_sort vertex graph-coloring-based pilot assignment with location-based channel estimation for massive mimo systems
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description Massive multiple-input multiple-output (MIMO) is considered as a promising technique in wireless communication systems, which contains cellular base stations equipped with a very large number of antennas to serve multiple users. However, the performance of massive MIMO is limited by the impact of pilot contamination due to inter-cell interference (ICI). In conventional massive MIMO systems, pilot sequences are randomly assigned to users without any further consideration. In this paper, a vertex graph coloring-based pilot assignment (VGC-PA) algorithm is proposed in conjunction with the existing post-processing discrete Fourier transform (DFT) filtering channel estimation to mitigate the ICI between users with the same pilot sequence in the channel estimation process to improve the capacity of the whole system. Specifically, we propose a metric to measure the potential ICI strength between any two users in the system based on their angle of arrival, correlation, and distances to construct an ICI graph, where each user is regarded as a node. This ICI graph denotes the potential ICI strength relationship among all users in the system. Then, we propose a VGC-PA algorithm to mitigate the ICI relationship between users with the same pilot sequences by assigning different pilots to connected users with high ICI metric based on some criteria. After the pilot assignment process, we apply the existing post-processing DFT filtering in the channel estimation process. The simulation results show the significant improvement of our proposed VGC-PA algorithm compared with existing methods.
topic Massive MIMO
pilot contamination
pilot assignment
inter-cell interference
vertex graph coloring-based
url https://ieeexplore.ieee.org/document/8252924/
work_keys_str_mv AT hieutrongdao vertexgraphcoloringbasedpilotassignmentwithlocationbasedchannelestimationformassivemimosystems
AT sunghwankim vertexgraphcoloringbasedpilotassignmentwithlocationbasedchannelestimationformassivemimosystems
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