Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution

To enable multi-stream transmission and increase the achievable rate, a hybrid digital/analog precoding structure is usually adopted in millimeter-wave (mmWave) MIMO systems. However, it may require matrix operations with a scale of antenna size, which is generally large in mmWave communications. Mo...

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Main Authors: Zhenyu Xiao, Pengfei Xia, Xiang-Gen Xia
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7971927/
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spelling doaj-a4a12fe18b144b16b92711cf38ce1a4a2021-03-29T20:02:30ZengIEEEIEEE Access2169-35362017-01-015161001611010.1109/ACCESS.2017.27240377971927Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall SolutionZhenyu Xiao0https://orcid.org/0000-0002-4884-542XPengfei Xia1Xiang-Gen Xia2School of Electronic and Information Engineering, Beihang University, Beijing, ChinaKey Laboratory of Embedded System and Service Computing, School of Electronics and Information Engineering, Tongji University, Shanghai, ChinaCollege of Information Engineering, Shenzhen University, Shenzhen, ChinaTo enable multi-stream transmission and increase the achievable rate, a hybrid digital/analog precoding structure is usually adopted in millimeter-wave (mmWave) MIMO systems. However, it may require matrix operations with a scale of antenna size, which is generally large in mmWave communications. Moreover, the channel estimation is also rather time-consuming due to the large number of antennas at both Tx/Rx sides. In this paper, a low-complexity overall channel estimation and hybrid precoding approach is proposed. In the channel estimation phase, a hierarchical multi-beam search scheme is proposed to fast acquire NS (the number of streams) multipath components (MPCs)/clusters with the highest powers. In the hybrid precoding phase, the analog and digital precodings are decoupled. The analog precoding is designed to steer along the NS acquired MPCs/clusters at both Tx/Rx sides, shaping an NS × NS baseband effective channel, while the digital precoding is performed in the baseband with the reduced-scale effective channel. Performance evaluations show that, compared with the state-of-the-art scheme, while achieving a close or even better performance when the number of radio frequency chains or streams is small, both the time complexity of the channel estimation and the computational complexity of the hybrid precoding are reduced.https://ieeexplore.ieee.org/document/7971927/Hybrid precodingmillimeter-wavemmWavemmWave MIMObeam searchhierarchical search
collection DOAJ
language English
format Article
sources DOAJ
author Zhenyu Xiao
Pengfei Xia
Xiang-Gen Xia
spellingShingle Zhenyu Xiao
Pengfei Xia
Xiang-Gen Xia
Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
IEEE Access
Hybrid precoding
millimeter-wave
mmWave
mmWave MIMO
beam search
hierarchical search
author_facet Zhenyu Xiao
Pengfei Xia
Xiang-Gen Xia
author_sort Zhenyu Xiao
title Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
title_short Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
title_full Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
title_fullStr Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
title_full_unstemmed Channel Estimation and Hybrid Precoding for Millimeter-Wave MIMO Systems: A Low-Complexity Overall Solution
title_sort channel estimation and hybrid precoding for millimeter-wave mimo systems: a low-complexity overall solution
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description To enable multi-stream transmission and increase the achievable rate, a hybrid digital/analog precoding structure is usually adopted in millimeter-wave (mmWave) MIMO systems. However, it may require matrix operations with a scale of antenna size, which is generally large in mmWave communications. Moreover, the channel estimation is also rather time-consuming due to the large number of antennas at both Tx/Rx sides. In this paper, a low-complexity overall channel estimation and hybrid precoding approach is proposed. In the channel estimation phase, a hierarchical multi-beam search scheme is proposed to fast acquire NS (the number of streams) multipath components (MPCs)/clusters with the highest powers. In the hybrid precoding phase, the analog and digital precodings are decoupled. The analog precoding is designed to steer along the NS acquired MPCs/clusters at both Tx/Rx sides, shaping an NS × NS baseband effective channel, while the digital precoding is performed in the baseband with the reduced-scale effective channel. Performance evaluations show that, compared with the state-of-the-art scheme, while achieving a close or even better performance when the number of radio frequency chains or streams is small, both the time complexity of the channel estimation and the computational complexity of the hybrid precoding are reduced.
topic Hybrid precoding
millimeter-wave
mmWave
mmWave MIMO
beam search
hierarchical search
url https://ieeexplore.ieee.org/document/7971927/
work_keys_str_mv AT zhenyuxiao channelestimationandhybridprecodingformillimeterwavemimosystemsalowcomplexityoverallsolution
AT pengfeixia channelestimationandhybridprecodingformillimeterwavemimosystemsalowcomplexityoverallsolution
AT xianggenxia channelestimationandhybridprecodingformillimeterwavemimosystemsalowcomplexityoverallsolution
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