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Estimating Damaged Volume of Historic Pagodas in Bagan after Earthquake using 3D Hough Transform

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dc.contributor.author Aung, Thida
dc.contributor.author Sein, Myint Myint
dc.date.accessioned 2020-11-18T12:35:15Z
dc.date.available 2020-11-18T12:35:15Z
dc.date.issued 2020-02
dc.identifier.citation DOI:10.18517/ijaseit.10.1.8865 en_US
dc.identifier.issn 2088-5334
dc.identifier.uri https://onlineresource.ucsy.edu.mm/handle/123456789/2536
dc.description.abstract On 24th August 2016, the magnitude of a 6.8 earthquake struck in Bagan from the depth of 52 miles. This earthquake caused much damage in historic pagodas in Bagan, one of the archeological houses in Asia. Analyzing the affected areas is an important task for the restoration and reconstruction of historic buildings after a disaster. Traditional methods of detecting damage to buildings focus on detecting 2D changes (i.e., only the appearance of the image), but the 2D information provided by the image is not sufficient when it involves detecting damage to buildings is often not precise. For finding out the solution, a method of 3D change detection is needed for estimating the volumes of damaged pagodas after the earthquake. The proposed system is aimed at producing a quick assessment of the damaged pagodas accurately and correctly. This system estimates the damaged volume of the pagoda based on the nature of the 3D point clouds. Post-earthquake photos are taken using an anonymous aircraft (UAV) and point cloud data is generated using VisualSFM software. The 3D Hough transform is used to find the intersection of the tower vertex and the 3D vertex at the line boundary. In addition, the proposed system can detect the reformed structure of the entire pagoda. The results show that the proposed approach facilitates the automated 3D detection of damaged pagodas and is a time-saving method for estimating the volume of damage caused to precious historic pagodas after a disaster. en_US
dc.language.iso en en_US
dc.publisher International Journal on Advanced Science, Engineering and Information Technology (IJASEIT) en_US
dc.relation.ispartofseries Vol.10(2020) No. 1;pp.90-97
dc.subject 2D/3D change detection en_US
dc.subject point clouds en_US
dc.subject Unnamed Aerial Vehicle (UAV) en_US
dc.subject VisualSFM en_US
dc.subject 3D Hough Transform en_US
dc.title Estimating Damaged Volume of Historic Pagodas in Bagan after Earthquake using 3D Hough Transform en_US
dc.type Article en_US


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