Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude

This paper proposes a three-dimensional (3D) channel model for satellite communications at Q-band in a high latitude, including the path loss, shadowing, and small-scale fading. The shadowing effect is modelled by a Markov chain. The three states in the Markov chain are separated by the threshold of...

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Main Authors: Lu Bai, Cheng-Xiang Wang, George Goussetis, Shangbin Wu, Qiuming Zhu, Wenqi Zhou, El-Hadi M. Aggoune
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8840846/
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spelling doaj-78711920f1f94961999509467d7061e92021-03-29T23:11:45ZengIEEEIEEE Access2169-35362019-01-01713769113770310.1109/ACCESS.2019.29419758840846Channel Modeling for Satellite Communication Channels at Q-Band in High LatitudeLu Bai0Cheng-Xiang Wang1https://orcid.org/0000-0002-9729-9592George Goussetis2Shangbin Wu3Qiuming Zhu4https://orcid.org/0000-0002-4995-5970Wenqi Zhou5El-Hadi M. Aggoune6Shandong Provincial Key Laboratory of Wireless Communication Technologies, School of Information Science and Engineering, Shandong University, Qingdao, ChinaNational Mobile Communications Research Laboratory, School of Information Science and Engineering, Southeast University, Nanjing, ChinaInstitute of Sensors, Signals and Systems, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, U.K.Samsung R&D Institute U.K., Staines-upon-Thames, U.K.College of Electronic and Information Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, ChinaShandong Huahan Electronics Company Ltd., Jinan, ChinaSensor Networks and Cellular Systems Research Center, University of Tabuk, Tabuk, Saudi ArabiaThis paper proposes a three-dimensional (3D) channel model for satellite communications at Q-band in a high latitude, including the path loss, shadowing, and small-scale fading. The shadowing effect is modelled by a Markov chain. The three states in the Markov chain are separated by the threshold of the received power level for the link budget and system optimization. The probability density function (PDF) of shadowing amplitude is modelled by a mixture of two Gaussian distributions with parameters obtained by the expectation-maximum (EM) algorithm. The small-scale fading is represented by a 3D geometry-based stochastic model (GBSM) where scatterers are located on the spherical surface of a hemisphere. The movement of the receiver and the Rician factor influenced by environment scattering are considered. Statistical properties including the local temporal autocorrelation function (ACF) and Wigner-Ville spectrum are derived. The satellite communication channel measurement at Q-band is conducted on the campus of Heriot-Watt University (HWU) in Edinburgh, UK. The parameters of our proposed channel model are estimated by the measurement data. Numerical and simulation results demonstrate that our proposed channel model has the ability to reproduce main statistical properties which are also consistent well with the corresponding theoretical and measurement results.https://ieeexplore.ieee.org/document/8840846/Satellite communicationsQ-bandMarkov chainGBSM
collection DOAJ
language English
format Article
sources DOAJ
author Lu Bai
Cheng-Xiang Wang
George Goussetis
Shangbin Wu
Qiuming Zhu
Wenqi Zhou
El-Hadi M. Aggoune
spellingShingle Lu Bai
Cheng-Xiang Wang
George Goussetis
Shangbin Wu
Qiuming Zhu
Wenqi Zhou
El-Hadi M. Aggoune
Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
IEEE Access
Satellite communications
Q-band
Markov chain
GBSM
author_facet Lu Bai
Cheng-Xiang Wang
George Goussetis
Shangbin Wu
Qiuming Zhu
Wenqi Zhou
El-Hadi M. Aggoune
author_sort Lu Bai
title Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
title_short Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
title_full Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
title_fullStr Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
title_full_unstemmed Channel Modeling for Satellite Communication Channels at Q-Band in High Latitude
title_sort channel modeling for satellite communication channels at q-band in high latitude
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description This paper proposes a three-dimensional (3D) channel model for satellite communications at Q-band in a high latitude, including the path loss, shadowing, and small-scale fading. The shadowing effect is modelled by a Markov chain. The three states in the Markov chain are separated by the threshold of the received power level for the link budget and system optimization. The probability density function (PDF) of shadowing amplitude is modelled by a mixture of two Gaussian distributions with parameters obtained by the expectation-maximum (EM) algorithm. The small-scale fading is represented by a 3D geometry-based stochastic model (GBSM) where scatterers are located on the spherical surface of a hemisphere. The movement of the receiver and the Rician factor influenced by environment scattering are considered. Statistical properties including the local temporal autocorrelation function (ACF) and Wigner-Ville spectrum are derived. The satellite communication channel measurement at Q-band is conducted on the campus of Heriot-Watt University (HWU) in Edinburgh, UK. The parameters of our proposed channel model are estimated by the measurement data. Numerical and simulation results demonstrate that our proposed channel model has the ability to reproduce main statistical properties which are also consistent well with the corresponding theoretical and measurement results.
topic Satellite communications
Q-band
Markov chain
GBSM
url https://ieeexplore.ieee.org/document/8840846/
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