Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak

Most people are still doubtful with regards to UAV (Unmanned Aerial Vehicle) photogrammetry as compared to government aerial photos obtained from the Department of Survey and Mapping Malaysia (JUPEM). Therefore, the aim of this research is to assess the use of aerial images from a Digital Metric Ca...

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Main Authors: Rusli @ Ruslik, Noradila, Abd. Ghani, Abdul Wafi
Format: Conference or Workshop Item
Published: 2018
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Online Access:http://eprints.utm.my/id/eprint/83324/
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spelling my.utm.833242019-10-21T03:44:07Z http://eprints.utm.my/id/eprint/83324/ Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak Rusli @ Ruslik, Noradila Abd. Ghani, Abdul Wafi TD Environmental technology. Sanitary engineering Most people are still doubtful with regards to UAV (Unmanned Aerial Vehicle) photogrammetry as compared to government aerial photos obtained from the Department of Survey and Mapping Malaysia (JUPEM). Therefore, the aim of this research is to assess the use of aerial images from a Digital Metric Camera (DMC) and Digital Consumer Grade Camera in orthophoto production. The Consumer Grade Digital Camera images in RAW format were obtained using UAV (Unmanned Aerial Vehicle) from JUPEM. The Digital Metric Camera image that has been processed is also provided by JUPEM. Aerial images from the consumer grade digital camera were then processed with Pix4D software together with the GCP (Ground Control Point) used for georeferencing. Next, the images were aligned, point cloud densification, meshing of cloud points, build texture from mesh, DEM (Digital Elevation Model) generation and mosaicking of the images. Orthomosaic images were generated alongside the DEM (Digital Elevation Models). Likewise, VP (Verification Points) were used to measure the accuracy of all the Orthomosaic images and DEM from Consumer Grade Camera, Metric Camera and TENDEM satellite. The expected results for this research will be in RMSE (Root Mean Square Error) in positioning error with the analysis as to why this error happens. In conclusion, if the accuracy of the Consumer Grade Camera with UAV as a platform is at par with JUPEM orthophoto, it will encourage more surveyors to adopt the UAV mapping for their projects. 2018 Conference or Workshop Item PeerReviewed Rusli @ Ruslik, Noradila and Abd. Ghani, Abdul Wafi (2018) Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak. In: The 1st Proceeding of Geomatic Research Innovation & Competition (GRIC2017).
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TD Environmental technology. Sanitary engineering
spellingShingle TD Environmental technology. Sanitary engineering
Rusli @ Ruslik, Noradila
Abd. Ghani, Abdul Wafi
Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
description Most people are still doubtful with regards to UAV (Unmanned Aerial Vehicle) photogrammetry as compared to government aerial photos obtained from the Department of Survey and Mapping Malaysia (JUPEM). Therefore, the aim of this research is to assess the use of aerial images from a Digital Metric Camera (DMC) and Digital Consumer Grade Camera in orthophoto production. The Consumer Grade Digital Camera images in RAW format were obtained using UAV (Unmanned Aerial Vehicle) from JUPEM. The Digital Metric Camera image that has been processed is also provided by JUPEM. Aerial images from the consumer grade digital camera were then processed with Pix4D software together with the GCP (Ground Control Point) used for georeferencing. Next, the images were aligned, point cloud densification, meshing of cloud points, build texture from mesh, DEM (Digital Elevation Model) generation and mosaicking of the images. Orthomosaic images were generated alongside the DEM (Digital Elevation Models). Likewise, VP (Verification Points) were used to measure the accuracy of all the Orthomosaic images and DEM from Consumer Grade Camera, Metric Camera and TENDEM satellite. The expected results for this research will be in RMSE (Root Mean Square Error) in positioning error with the analysis as to why this error happens. In conclusion, if the accuracy of the Consumer Grade Camera with UAV as a platform is at par with JUPEM orthophoto, it will encourage more surveyors to adopt the UAV mapping for their projects.
format Conference or Workshop Item
author Rusli @ Ruslik, Noradila
Abd. Ghani, Abdul Wafi
author_facet Rusli @ Ruslik, Noradila
Abd. Ghani, Abdul Wafi
author_sort Rusli @ Ruslik, Noradila
title Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
title_short Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
title_full Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
title_fullStr Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
title_full_unstemmed Assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in Kampung Asam Kubang, Taiping, Perak
title_sort assessment of topographic mapping using digital metric camera and digital consumer grade camera in terms of accuracy in kampung asam kubang, taiping, perak
publishDate 2018
url http://eprints.utm.my/id/eprint/83324/
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score 13.214268