Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System

Low Earth Orbit (LEO) satellite systems have received considerable attentions for its advantages and potential applications in global communication. Yet LEO satellite-ground communication is challenged by the huge Doppler shift. This article is devoted to studying how to deal with this challenge in...

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Main Authors: Entong Meng, Xiangyuan Bu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9164960/
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spelling doaj-3ad8b1d03e504e08be4b673d3ba37da82021-03-30T01:55:36ZengIEEEIEEE Access2169-35362020-01-01814820314821310.1109/ACCESS.2020.30157549164960Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite SystemEntong Meng0https://orcid.org/0000-0002-8431-9275Xiangyuan Bu1https://orcid.org/0000-0001-9092-487XSchool of Information and Electronics, Beijing Institute of Technology, Beijing, ChinaSchool of Information and Electronics, Beijing Institute of Technology, Beijing, ChinaLow Earth Orbit (LEO) satellite systems have received considerable attentions for its advantages and potential applications in global communication. Yet LEO satellite-ground communication is challenged by the huge Doppler shift. This article is devoted to studying how to deal with this challenge in Multi-carrier Direct Sequence Code Division Multiple Access (MC-DS-CDMA) systems in the presence of multi-path and partial band interferences for LEO satellite-ground link in urban areas. To this end, we design a two-dimensional joint acquisition algorithm. Specifically, we acquire the delay and Doppler factor by solving the Maximum Likelihood (ML) problem with decision variable falling into two-dimensional uncertain region of the estimated parameters. We then use grid-based searching method to access the ML estimates of the delay and Doppler factor at the cost of acceptable complexity. We also derive the detection probability and Mean Square Error (MSE) in both Additive White Gaussian Noise (AWGN) and Rayleigh fading channels. It is shown that the performance of MC-DS-CDMA with the proposed algorithm significantly outperforms its single-carrier counterpart in Rayleigh fading channel, and is proved to be more tolerant to partial band interferences for both AWGN and Rayleigh fading scenarios.https://ieeexplore.ieee.org/document/9164960/LowEarth orbit (LEO) satellite systemmulti-carrier direct sequence code division multiple access (MC-DS-CDMA)two-dimensional joint acquisitiondetection probabilitymean square error (MSE)
collection DOAJ
language English
format Article
sources DOAJ
author Entong Meng
Xiangyuan Bu
spellingShingle Entong Meng
Xiangyuan Bu
Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
IEEE Access
LowEarth orbit (LEO) satellite system
multi-carrier direct sequence code division multiple access (MC-DS-CDMA)
two-dimensional joint acquisition
detection probability
mean square error (MSE)
author_facet Entong Meng
Xiangyuan Bu
author_sort Entong Meng
title Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
title_short Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
title_full Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
title_fullStr Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
title_full_unstemmed Two-Dimensional Joint Acquisition of Doppler Factor and Delay for MC-DS-CDMA in LEO Satellite System
title_sort two-dimensional joint acquisition of doppler factor and delay for mc-ds-cdma in leo satellite system
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Low Earth Orbit (LEO) satellite systems have received considerable attentions for its advantages and potential applications in global communication. Yet LEO satellite-ground communication is challenged by the huge Doppler shift. This article is devoted to studying how to deal with this challenge in Multi-carrier Direct Sequence Code Division Multiple Access (MC-DS-CDMA) systems in the presence of multi-path and partial band interferences for LEO satellite-ground link in urban areas. To this end, we design a two-dimensional joint acquisition algorithm. Specifically, we acquire the delay and Doppler factor by solving the Maximum Likelihood (ML) problem with decision variable falling into two-dimensional uncertain region of the estimated parameters. We then use grid-based searching method to access the ML estimates of the delay and Doppler factor at the cost of acceptable complexity. We also derive the detection probability and Mean Square Error (MSE) in both Additive White Gaussian Noise (AWGN) and Rayleigh fading channels. It is shown that the performance of MC-DS-CDMA with the proposed algorithm significantly outperforms its single-carrier counterpart in Rayleigh fading channel, and is proved to be more tolerant to partial band interferences for both AWGN and Rayleigh fading scenarios.
topic LowEarth orbit (LEO) satellite system
multi-carrier direct sequence code division multiple access (MC-DS-CDMA)
two-dimensional joint acquisition
detection probability
mean square error (MSE)
url https://ieeexplore.ieee.org/document/9164960/
work_keys_str_mv AT entongmeng twodimensionaljointacquisitionofdopplerfactoranddelayformcdscdmainleosatellitesystem
AT xiangyuanbu twodimensionaljointacquisitionofdopplerfactoranddelayformcdscdmainleosatellitesystem
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