Drone LiDAR Application For 3D City Model

The availability of spatial information in 3D in a city that will apply the smart city concept is minimal or even non-existent. This makes the information conveyed less clear and less accurate. 3D map presentation is an indispensable component in the visualization of smart cities. The acquisition of...

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Main Authors: Afradon Aditya Setyawan, Muhammad Iqbal Taftazani, Syamsul Bahri, Erma Dwi Noviana, Maritsa Faridatunnisa
Format: Article
Language:English
Published: Politeknik Negeri Batam 2022-04-01
Series:Journal of Applied Geospatial Information
Subjects:
Online Access:https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/3462
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author Afradon Aditya Setyawan
Muhammad Iqbal Taftazani
Syamsul Bahri
Erma Dwi Noviana
Maritsa Faridatunnisa
author_facet Afradon Aditya Setyawan
Muhammad Iqbal Taftazani
Syamsul Bahri
Erma Dwi Noviana
Maritsa Faridatunnisa
author_sort Afradon Aditya Setyawan
collection DOAJ
description The availability of spatial information in 3D in a city that will apply the smart city concept is minimal or even non-existent. This makes the information conveyed less clear and less accurate. 3D map presentation is an indispensable component in the visualization of smart cities. The acquisition of spatial information in 3D can use several methods, one of which is the LiDAR (Light Detection and Ranging) drone. The Drone LiDAR is one of the new technologies in mapping surveys. Initially, LiDAR technology used a manned aircraft and had very large dimensions. Technological developments have made LiDAR portable using drones. Data acquisition was carried out using a multirotor-type Drone LiDAR from microdrones with a flying height of 60 meters above the ground. An area of ​​6 hectares in the Bulaksumur UGM area is the object of research for the 3D city model building. The objects mapped would range from one-story to five-story buildings. The results of data acquisition in the form of a point cloud are then modeled into a 3D building with the micro station software plugin Terra Solid and Terra Model. Modeling is done using automatic and manual methods. The results obtained are in the form of a 3D city model with a LOD 2 level of detail. The amount of vegetation in the mapped area makes the point cloud detail on the front side of the building less dense. However, the accuracy obtained is quite high, ranging from 0,4 to 5,1 cm, making it suitable for making 3D city models with LOD 2 detailed specifications.
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spelling doaj.art-4ac65abd5a0148d89831ca205856033f2022-12-22T02:01:46ZengPoliteknik Negeri BatamJournal of Applied Geospatial Information2579-36082022-04-016157257610.30871/jagi.v6i1.34623462Drone LiDAR Application For 3D City ModelAfradon Aditya Setyawan0Muhammad Iqbal Taftazani1Syamsul Bahri2Erma Dwi Noviana3Maritsa Faridatunnisa4Study Program of Technology Survey and Mapping, Vocational College, Universitas Gadjah Mada, IndonesiaStudy Program of Technology Survey and Mapping, Vocational College, Universitas Gadjah Mada, IndonesiaMicrodrones, USAIndonesia Ministry of Agrarian Affairs and Spatial PlanningGeodetic Engineering, Faculty of Engineering, Universitas Gadjah Mada, IndonesiaThe availability of spatial information in 3D in a city that will apply the smart city concept is minimal or even non-existent. This makes the information conveyed less clear and less accurate. 3D map presentation is an indispensable component in the visualization of smart cities. The acquisition of spatial information in 3D can use several methods, one of which is the LiDAR (Light Detection and Ranging) drone. The Drone LiDAR is one of the new technologies in mapping surveys. Initially, LiDAR technology used a manned aircraft and had very large dimensions. Technological developments have made LiDAR portable using drones. Data acquisition was carried out using a multirotor-type Drone LiDAR from microdrones with a flying height of 60 meters above the ground. An area of ​​6 hectares in the Bulaksumur UGM area is the object of research for the 3D city model building. The objects mapped would range from one-story to five-story buildings. The results of data acquisition in the form of a point cloud are then modeled into a 3D building with the micro station software plugin Terra Solid and Terra Model. Modeling is done using automatic and manual methods. The results obtained are in the form of a 3D city model with a LOD 2 level of detail. The amount of vegetation in the mapped area makes the point cloud detail on the front side of the building less dense. However, the accuracy obtained is quite high, ranging from 0,4 to 5,1 cm, making it suitable for making 3D city models with LOD 2 detailed specifications.https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/34623d model, smart city, drone lidar
spellingShingle Afradon Aditya Setyawan
Muhammad Iqbal Taftazani
Syamsul Bahri
Erma Dwi Noviana
Maritsa Faridatunnisa
Drone LiDAR Application For 3D City Model
Journal of Applied Geospatial Information
3d model, smart city, drone lidar
title Drone LiDAR Application For 3D City Model
title_full Drone LiDAR Application For 3D City Model
title_fullStr Drone LiDAR Application For 3D City Model
title_full_unstemmed Drone LiDAR Application For 3D City Model
title_short Drone LiDAR Application For 3D City Model
title_sort drone lidar application for 3d city model
topic 3d model, smart city, drone lidar
url https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/3462
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AT muhammadiqbaltaftazani dronelidarapplicationfor3dcitymodel
AT syamsulbahri dronelidarapplicationfor3dcitymodel
AT ermadwinoviana dronelidarapplicationfor3dcitymodel
AT maritsafaridatunnisa dronelidarapplicationfor3dcitymodel