Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail

There are presently two Global Navigation Satellite System core system namely Global Positioning System (GPS) and Differential Global Positioning System (DGPS). The dependency on these space-based technology for navigation, positioning and timing is on the growth globally, and already be the esse...

Full description

Saved in:
Bibliographic Details
Main Author: Ismail, Muhammad Fahmi
Format: Thesis
Language:English
Published: 2019
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/23553/1/TD_MUHAMMAD%20FAHMI%20ISMAIL%20AP%20R%2019.5.PDF
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-uitm-ir.23553
record_format uketd_dc
spelling my-uitm-ir.235532019-04-07T08:17:49Z Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail 2019-03-21 Ismail, Muhammad Fahmi Global Positioning System Radio waves (Theory) There are presently two Global Navigation Satellite System core system namely Global Positioning System (GPS) and Differential Global Positioning System (DGPS). The dependency on these space-based technology for navigation, positioning and timing is on the growth globally, and already be the essential system worldwide. The present service of GPS has motivate the acceptance and integration of the technology into peaceful civil, commercial and scientific application worldwide. Issues such as integrity, accuracy, availability and continuity are not adequately addressed. Lacking of these requirement may lead to occurrence of catastrophes. While in hydrography survey, positioning is a crucial part where it is determine the actual position based on seabed of the survey area. Where according to International Hydrographic Organization (IHO), the standard accuraey for positioning in survey work is two (2) meter aecuracy level. In order to ensure which positioning method that best suit hydrographic positioning accordance to the tolerance given by IHO, this paper study about the difference accuracy of positioning based on different source and analyse the accuraey between Standalone GPS and Radio Beacons DGPS observation. Observation between these two methods is done by using dynamic mode to imitate the motion of a vessel. Two observation being done for both method on the same sounding line and outcome coordinate from both method were compared to each other and also compared with sounding line. Displacement value from these method will be analyse using statistical analysis by method Root Mean Square Error (RMSE) to define which method has a good accuracy. The result of dynamic observation for the two (2) method show that the displacement of Radio Beacons DGPS method is lower that Standalone GPS method compared to sounding line where the displacement is below one (1) meter and according to IHO, the accuracy of DGPS based on radio beacons for this study is significant at the 95% confidence level because the RMSE is below that two (2) meter. The outcome form this study show that Radio Beacon DGPS is more accurate compared to Standalone GPS even the observation was on the ground surface and long baseline. 2019-03 Thesis https://ir.uitm.edu.my/id/eprint/23553/ https://ir.uitm.edu.my/id/eprint/23553/1/TD_MUHAMMAD%20FAHMI%20ISMAIL%20AP%20R%2019.5.PDF text en public degree Universiti Teknologi Mara Perlis Faculty of Architecture, Planning and Surveying
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
topic Global Positioning System
Radio waves (Theory)
spellingShingle Global Positioning System
Radio waves (Theory)
Ismail, Muhammad Fahmi
Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
description There are presently two Global Navigation Satellite System core system namely Global Positioning System (GPS) and Differential Global Positioning System (DGPS). The dependency on these space-based technology for navigation, positioning and timing is on the growth globally, and already be the essential system worldwide. The present service of GPS has motivate the acceptance and integration of the technology into peaceful civil, commercial and scientific application worldwide. Issues such as integrity, accuracy, availability and continuity are not adequately addressed. Lacking of these requirement may lead to occurrence of catastrophes. While in hydrography survey, positioning is a crucial part where it is determine the actual position based on seabed of the survey area. Where according to International Hydrographic Organization (IHO), the standard accuraey for positioning in survey work is two (2) meter aecuracy level. In order to ensure which positioning method that best suit hydrographic positioning accordance to the tolerance given by IHO, this paper study about the difference accuracy of positioning based on different source and analyse the accuraey between Standalone GPS and Radio Beacons DGPS observation. Observation between these two methods is done by using dynamic mode to imitate the motion of a vessel. Two observation being done for both method on the same sounding line and outcome coordinate from both method were compared to each other and also compared with sounding line. Displacement value from these method will be analyse using statistical analysis by method Root Mean Square Error (RMSE) to define which method has a good accuracy. The result of dynamic observation for the two (2) method show that the displacement of Radio Beacons DGPS method is lower that Standalone GPS method compared to sounding line where the displacement is below one (1) meter and according to IHO, the accuracy of DGPS based on radio beacons for this study is significant at the 95% confidence level because the RMSE is below that two (2) meter. The outcome form this study show that Radio Beacon DGPS is more accurate compared to Standalone GPS even the observation was on the ground surface and long baseline.
format Thesis
qualification_level Bachelor degree
author Ismail, Muhammad Fahmi
author_facet Ismail, Muhammad Fahmi
author_sort Ismail, Muhammad Fahmi
title Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
title_short Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
title_full Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
title_fullStr Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
title_full_unstemmed Comparison accuracy between standalone global positioning system [GPS] and differential global positioning system [DGPS] based on radio beacon in hydrography surveying / Muhammad Fahmi Ismail
title_sort comparison accuracy between standalone global positioning system [gps] and differential global positioning system [dgps] based on radio beacon in hydrography surveying / muhammad fahmi ismail
granting_institution Universiti Teknologi Mara Perlis
granting_department Faculty of Architecture, Planning and Surveying
publishDate 2019
url https://ir.uitm.edu.my/id/eprint/23553/1/TD_MUHAMMAD%20FAHMI%20ISMAIL%20AP%20R%2019.5.PDF
_version_ 1783733831926284288