The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay

Global Positioning System (GPS] tropospheric delay refers to the refraction of the GPS signal as it passes through the'neutral atmosphere from the satellite to the earth, which causes longer distance traveled by the signal. The issue of atmospheric delay is investigated to minimize the position...

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Main Authors: Sakidin, Hamzah, Tay, Choo Chuan, Sakidin, Saedah
Format: Conference or Workshop Item
Language:English
Published: 2009
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Online Access:http://eprints.utem.edu.my/id/eprint/6988/1/Proceedings_of_MUCEET2009_Malaysian_Technical_Universities_Conference_on_Engineering_and_Technology_June_20.pdf
http://eprints.utem.edu.my/id/eprint/6988/
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spelling my.utem.eprints.69882015-05-28T03:46:26Z http://eprints.utem.edu.my/id/eprint/6988/ The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay Sakidin, Hamzah Tay, Choo Chuan Sakidin, Saedah Q Science (General) Global Positioning System (GPS] tropospheric delay refers to the refraction of the GPS signal as it passes through the'neutral atmosphere from the satellite to the earth, which causes longer distance traveled by the signal. The issue of atmospheric delay is investigated to minimize the positioning error due to tropospheric and ionospheric delay. The mathematical modeling on the tropospheric model should be revised and also modified to improve the delay. The zenith tropospheric delay can be amplified by a coefficient factor called mapping function to form total tropospheric delay. There are many mapping functions have been established to calculate the scale factor which can affect the total tropospheric delay. However, the mapping functions give large value when the elevation angles less than 5 degrees. The modification of the continued fractions by replacing sine function to cosine function in the popular mapping function called UNBabC has been proposed and tested to ensure the improvement of the result The result of the modification, show a significant reduction of mapping function scale factor. The modified UNB3bC mapping function has improved the tropospheric delay up to 19.1% at 2 degree elevation angle. This modified mapping function could be used as the alternative mapping function. 2009-06-20 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/6988/1/Proceedings_of_MUCEET2009_Malaysian_Technical_Universities_Conference_on_Engineering_and_Technology_June_20.pdf Sakidin, Hamzah and Tay, Choo Chuan and Sakidin, Saedah (2009) The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay. In: MUCEET2009 Malaysian Technical Universities Conference on Engineering and Technology, June 20-22, 2009, MS Garden, Kuantan, Pahang, Malaysia.
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Sakidin, Hamzah
Tay, Choo Chuan
Sakidin, Saedah
The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
description Global Positioning System (GPS] tropospheric delay refers to the refraction of the GPS signal as it passes through the'neutral atmosphere from the satellite to the earth, which causes longer distance traveled by the signal. The issue of atmospheric delay is investigated to minimize the positioning error due to tropospheric and ionospheric delay. The mathematical modeling on the tropospheric model should be revised and also modified to improve the delay. The zenith tropospheric delay can be amplified by a coefficient factor called mapping function to form total tropospheric delay. There are many mapping functions have been established to calculate the scale factor which can affect the total tropospheric delay. However, the mapping functions give large value when the elevation angles less than 5 degrees. The modification of the continued fractions by replacing sine function to cosine function in the popular mapping function called UNBabC has been proposed and tested to ensure the improvement of the result The result of the modification, show a significant reduction of mapping function scale factor. The modified UNB3bC mapping function has improved the tropospheric delay up to 19.1% at 2 degree elevation angle. This modified mapping function could be used as the alternative mapping function.
format Conference or Workshop Item
author Sakidin, Hamzah
Tay, Choo Chuan
Sakidin, Saedah
author_facet Sakidin, Hamzah
Tay, Choo Chuan
Sakidin, Saedah
author_sort Sakidin, Hamzah
title The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
title_short The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
title_full The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
title_fullStr The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
title_full_unstemmed The Effect of Modified UNBabc Mapping Function On the Improvement of Global Positioning System Tropospheric Delay
title_sort effect of modified unbabc mapping function on the improvement of global positioning system tropospheric delay
publishDate 2009
url http://eprints.utem.edu.my/id/eprint/6988/1/Proceedings_of_MUCEET2009_Malaysian_Technical_Universities_Conference_on_Engineering_and_Technology_June_20.pdf
http://eprints.utem.edu.my/id/eprint/6988/
_version_ 1665905339110785024
score 13.187197