Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation

Precise user equipment (UE) location is paramount for the reliable operation of location-based services provided by mobile network operators and other emerging applications. In this paper, the Long Term Evolution (LTE) network positioning performance based on mobile assist Observed Time Difference o...

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Main Authors: Abdulrahman Kh. Alhafid, Sedki Younis
Format: Article
Language:English
Published: PC Technology Center 2020-06-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/201382
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spelling doaj-1f6f7f17a2da4ec9a9f153f7762dc6e92020-11-25T03:05:38ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612020-06-0139 (105)202810.15587/1729-4061.2020.201382201382Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluationAbdulrahman Kh. Alhafid0Sedki Younis1University of Mosul Al Majmoaa str., Mosul, Iraq, 41002Ninevah University Al Majmoaa str., Mosul, Iraq, 41002Precise user equipment (UE) location is paramount for the reliable operation of location-based services provided by mobile network operators and other emerging applications. In this paper, the Long Term Evolution (LTE) network positioning performance based on mobile assist Observed Time Difference of Arrival (OTDoA) method is considered. The received signal time difference (RSTD) measurements are estimated by the UE using dedicated position reference signal (PRS) transmitted in the downlink frame where the reported time measurements are used by the network for location calculation. A simulation framework for the position estimation in LTE networks is presented where the LTE downlink communication link is implemented. The correlation-based method for the time of arrival measurement is used for the implementation of OTDoA. The simulation framework provides different configurations and adjustments for the system and network parameters for evaluating the performance of LTE positioning using OTDoA over multipath fading channels. Different simulation scenarios are conducted to identify the influence of various parameters of LTE system and positioning procedure setup on the positioning accuracy. Simulation results demonstrated that the positioning accuracy is highly affected by the channel fading condition where the accuracy of time of arrival measurements is deteriorated in severe fading environments; however, the positioning accuracy can be significantly improved by increasing the positioning sequences involved in the estimation process either in the frequency domain or in the time domain.http://journals.uran.ua/eejet/article/view/201382: ltepositioningestimationotdoatime of arrivalcorrelationmonte-carlo simulationmultilaterationfading channelsgeolocation
collection DOAJ
language English
format Article
sources DOAJ
author Abdulrahman Kh. Alhafid
Sedki Younis
spellingShingle Abdulrahman Kh. Alhafid
Sedki Younis
Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
Eastern-European Journal of Enterprise Technologies
: lte
positioning
estimation
otdoa
time of arrival
correlation
monte-carlo simulation
multilateration
fading channels
geolocation
author_facet Abdulrahman Kh. Alhafid
Sedki Younis
author_sort Abdulrahman Kh. Alhafid
title Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
title_short Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
title_full Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
title_fullStr Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
title_full_unstemmed Observed time difference of arrival based position estimation for LTE systems: simulation framework and performance evaluation
title_sort observed time difference of arrival based position estimation for lte systems: simulation framework and performance evaluation
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2020-06-01
description Precise user equipment (UE) location is paramount for the reliable operation of location-based services provided by mobile network operators and other emerging applications. In this paper, the Long Term Evolution (LTE) network positioning performance based on mobile assist Observed Time Difference of Arrival (OTDoA) method is considered. The received signal time difference (RSTD) measurements are estimated by the UE using dedicated position reference signal (PRS) transmitted in the downlink frame where the reported time measurements are used by the network for location calculation. A simulation framework for the position estimation in LTE networks is presented where the LTE downlink communication link is implemented. The correlation-based method for the time of arrival measurement is used for the implementation of OTDoA. The simulation framework provides different configurations and adjustments for the system and network parameters for evaluating the performance of LTE positioning using OTDoA over multipath fading channels. Different simulation scenarios are conducted to identify the influence of various parameters of LTE system and positioning procedure setup on the positioning accuracy. Simulation results demonstrated that the positioning accuracy is highly affected by the channel fading condition where the accuracy of time of arrival measurements is deteriorated in severe fading environments; however, the positioning accuracy can be significantly improved by increasing the positioning sequences involved in the estimation process either in the frequency domain or in the time domain.
topic : lte
positioning
estimation
otdoa
time of arrival
correlation
monte-carlo simulation
multilateration
fading channels
geolocation
url http://journals.uran.ua/eejet/article/view/201382
work_keys_str_mv AT abdulrahmankhalhafid observedtimedifferenceofarrivalbasedpositionestimationforltesystemssimulationframeworkandperformanceevaluation
AT sedkiyounis observedtimedifferenceofarrivalbasedpositionestimationforltesystemssimulationframeworkandperformanceevaluation
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