Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication

The deployment of the Millimeter-Wave (mm-Wave) band in 5G and beyond wireless communications networks is one of the emerging fields owing to its potential of providing extensive bandwidth. Frequency Hopping (FH) has a high potential for use in wireless networks due to its key advantages of spreadin...

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Autores principales: Abbas Ahmed, Qasim Zeeshan Ahmed, Ahmad Almogren, Syed Kamran Haider, Ateeq Ur Rehman
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Lenguaje:EN
Publicado: IEEE 2021
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Acceso en línea:https://doaj.org/article/c1cf72389c7f429498749a88abd6754d
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spelling oai:doaj.org-article:c1cf72389c7f429498749a88abd6754d2021-11-18T00:08:31ZHybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication2169-353610.1109/ACCESS.2021.3124923https://doaj.org/article/c1cf72389c7f429498749a88abd6754d2021-01-01T00:00:00Zhttps://ieeexplore.ieee.org/document/9598881/https://doaj.org/toc/2169-3536The deployment of the Millimeter-Wave (mm-Wave) band in 5G and beyond wireless communications networks is one of the emerging fields owing to its potential of providing extensive bandwidth. Frequency Hopping (FH) has a high potential for use in wireless networks due to its key advantages of spreading the interference over wide bandwidth and of providing diversity gain in counteracting frequency-selective fading. Furthermore, Fast Frequency Hopping (FFH) intrinsically amalgamated with directional Beamforming (BF) may overcome the impairments because of the path-loss of mm-Wave communications. Thus, we propose FFH assisted base-band precoding aided BF for mitigating the mm-wave channel impairments imposed by both fading as well as path loss, whilst relying on a minimal range of radio frequency chains. The mathematical analysis and simulation results demonstrate that hybrid precoded FFH is indeed a promising high-capacity technique of attaining both time- and frequency-domain diversity gains for the mm-Wave communications.Abbas AhmedQasim Zeeshan AhmedAhmad AlmogrenSyed Kamran HaiderAteeq Ur RehmanIEEEarticlemm-Wavefrequency hopping5Gwireless networkElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENIEEE Access, Vol 9, Pp 149596-149608 (2021)
institution DOAJ
collection DOAJ
language EN
topic mm-Wave
frequency hopping
5G
wireless network
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle mm-Wave
frequency hopping
5G
wireless network
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Abbas Ahmed
Qasim Zeeshan Ahmed
Ahmad Almogren
Syed Kamran Haider
Ateeq Ur Rehman
Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
description The deployment of the Millimeter-Wave (mm-Wave) band in 5G and beyond wireless communications networks is one of the emerging fields owing to its potential of providing extensive bandwidth. Frequency Hopping (FH) has a high potential for use in wireless networks due to its key advantages of spreading the interference over wide bandwidth and of providing diversity gain in counteracting frequency-selective fading. Furthermore, Fast Frequency Hopping (FFH) intrinsically amalgamated with directional Beamforming (BF) may overcome the impairments because of the path-loss of mm-Wave communications. Thus, we propose FFH assisted base-band precoding aided BF for mitigating the mm-wave channel impairments imposed by both fading as well as path loss, whilst relying on a minimal range of radio frequency chains. The mathematical analysis and simulation results demonstrate that hybrid precoded FFH is indeed a promising high-capacity technique of attaining both time- and frequency-domain diversity gains for the mm-Wave communications.
format article
author Abbas Ahmed
Qasim Zeeshan Ahmed
Ahmad Almogren
Syed Kamran Haider
Ateeq Ur Rehman
author_facet Abbas Ahmed
Qasim Zeeshan Ahmed
Ahmad Almogren
Syed Kamran Haider
Ateeq Ur Rehman
author_sort Abbas Ahmed
title Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
title_short Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
title_full Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
title_fullStr Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
title_full_unstemmed Hybrid Precoding Aided Fast Frequency-Hopping for Millimeter-Wave Communication
title_sort hybrid precoding aided fast frequency-hopping for millimeter-wave communication
publisher IEEE
publishDate 2021
url https://doaj.org/article/c1cf72389c7f429498749a88abd6754d
work_keys_str_mv AT abbasahmed hybridprecodingaidedfastfrequencyhoppingformillimeterwavecommunication
AT qasimzeeshanahmed hybridprecodingaidedfastfrequencyhoppingformillimeterwavecommunication
AT ahmadalmogren hybridprecodingaidedfastfrequencyhoppingformillimeterwavecommunication
AT syedkamranhaider hybridprecodingaidedfastfrequencyhoppingformillimeterwavecommunication
AT ateequrrehman hybridprecodingaidedfastfrequencyhoppingformillimeterwavecommunication
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