GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali

The integral of electron density along the path, known as Total Electron Content (TEC) is a major source of GPS positioning error, ever since the turn off of Selection Availability (SA) in year 2000. Ionization process is mainly caused by solar radiation. Therefore, the density of electrons is very...

Full description

Saved in:
Bibliographic Details
Main Authors: Ya'acob, Norsuzila, Yusof, Azita Laily, Ali, Mohd Tarmizi
Format: Research Reports
Language:English
Published: 2012
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/67051/1/67051.pdf
https://ir.uitm.edu.my/id/eprint/67051/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.uitm.ir.67051
record_format eprints
spelling my.uitm.ir.670512022-09-21T02:34:20Z https://ir.uitm.edu.my/id/eprint/67051/ GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali Ya'acob, Norsuzila Yusof, Azita Laily Ali, Mohd Tarmizi Electron GPS receivers The integral of electron density along the path, known as Total Electron Content (TEC) is a major source of GPS positioning error, ever since the turn off of Selection Availability (SA) in year 2000. Ionization process is mainly caused by solar radiation. Therefore, the density of electrons is very much dependant on location and time of the day, as well as season and sunspot cycle. This paper studied the TEC value for Malaysia regions, based on location of the receivers (latitude, longitude, height) and time of the day. The 13 locations of GPS receiver stations across West Malaysia were chosen and their TEC values were compared. The determination of the TEC value in ionosphere is done using ‘leveling’ process. In the process, the error translated from code-delay to the carrier-phase is assessed to reduce carrier phase ambiguities from the data. The positioning error can be calculated as one unit of TEC introduces a range error of approximately 0.16 meters at the L1 1.6GHz frequency of GPS. For this project, the calculated TEC range errors were from -3.1 meters to 7.2 meters at different receiver locations. In addition, for the 24 hours observation, the range errors varied from 1.4 meters to 6.6 meters, with the peak value at 15 hour local time and minimum at 1 hour local time 2012 Research Reports NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/67051/1/67051.pdf GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali. (2012) [Research Reports] <http://terminalib.uitm.edu.my/67051.pdf> (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Electron
GPS receivers
spellingShingle Electron
GPS receivers
Ya'acob, Norsuzila
Yusof, Azita Laily
Ali, Mohd Tarmizi
GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
description The integral of electron density along the path, known as Total Electron Content (TEC) is a major source of GPS positioning error, ever since the turn off of Selection Availability (SA) in year 2000. Ionization process is mainly caused by solar radiation. Therefore, the density of electrons is very much dependant on location and time of the day, as well as season and sunspot cycle. This paper studied the TEC value for Malaysia regions, based on location of the receivers (latitude, longitude, height) and time of the day. The 13 locations of GPS receiver stations across West Malaysia were chosen and their TEC values were compared. The determination of the TEC value in ionosphere is done using ‘leveling’ process. In the process, the error translated from code-delay to the carrier-phase is assessed to reduce carrier phase ambiguities from the data. The positioning error can be calculated as one unit of TEC introduces a range error of approximately 0.16 meters at the L1 1.6GHz frequency of GPS. For this project, the calculated TEC range errors were from -3.1 meters to 7.2 meters at different receiver locations. In addition, for the 24 hours observation, the range errors varied from 1.4 meters to 6.6 meters, with the peak value at 15 hour local time and minimum at 1 hour local time
format Research Reports
author Ya'acob, Norsuzila
Yusof, Azita Laily
Ali, Mohd Tarmizi
author_facet Ya'acob, Norsuzila
Yusof, Azita Laily
Ali, Mohd Tarmizi
author_sort Ya'acob, Norsuzila
title GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
title_short GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
title_full GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
title_fullStr GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
title_full_unstemmed GPS total electron content (TEC) and position range rate error using Malaysia data / Norsuzila Ya'acob, Azita Laily Yusof and Mohd Tarmizi Ali
title_sort gps total electron content (tec) and position range rate error using malaysia data / norsuzila ya'acob, azita laily yusof and mohd tarmizi ali
publishDate 2012
url https://ir.uitm.edu.my/id/eprint/67051/1/67051.pdf
https://ir.uitm.edu.my/id/eprint/67051/
_version_ 1744651672878055424
score 13.211869