Accès libre

Use of Modern Technologies Such as UAV, Photogrammetry, 3D Modeling, and GIS for Urban Planning

,  et   
19 mai 2025
À propos de cet article

Citez
Télécharger la couverture

Abdullah, S., Abdul Rashid, M.F., Tahar, K.N., Osoman, M.A., 2021. Tree Crown Mapping Based on Unmanned Aerial Vehicle (UAV) Towards A Green-Sustainable Residential. Planning Malaysia, 19(16), pp. 97–107. DOI:10.21837/pm.v19i16.955. Search in Google Scholar

Adrah, E., Wan Mohd Jaafar, W.S., Omar, H., Bajaj, S., Leite, R.V., Mazlan, S.M., Silva, C.A., Chel Gee Ooi, M., Mohd Said, M.N., Abdul Maulud, K.N. et al., 2022. Analyzing Canopy Height Patterns and Environmental Landscape Drivers in Tropical Forests Using NASA’s GEDI Spaceborne LiDAR. Remote Sensing, 14, 3172. https://doi.org/10.3390/rs14133172. Search in Google Scholar

Almalki, R., Khaki, M., Saco, P.M., Rodriguez, J.F., 2022. Monitoring and Mapping Vegetation Cover Changes in Arid and Semi-Arid Areas Using Remote Sensing Technology: A Review. Remote Sensing, 14, 5143. https://doi.org/10.3390/rs14205143. Search in Google Scholar

Arayici, Y., Hamilton A., 2005. Modeling 3D Scanned Data to Visualize the Built Environment. The 9th International Conference of Information Visualisation, London, pp.509-514, ISBN: 0-7695-2397-8. DOI: 10.1109/IV.2005.82. Search in Google Scholar

Bakogiannis, E., Kyriakidis, C., Siti, M., Kougioumtzidis, N., Potsiou, C., 2017. The use of VGI in noise mapping. Journal of Geodesy, Cartography and Cadastre, 8(3), pp.16-25. https://jgcc.geoprevi.ro/docs/2018/8/jgcc_2018_no8_3.pdf. Search in Google Scholar

Bostrom, G., Fiocco, M., Gonçalves, J.G.M, Sequeira V., 2006. Urban 3D modelling using terrestrial laser scanners. IAPRS Volume XXXVI, Part 5, Dresden. https://www.isprs.org/proceedings/xxxvi/part5/paper/SEQU_646.pdf. Search in Google Scholar

Castro, M.K.Q., Agbisit, J.B., 2021. The ASEAN—The Road to Sustainable Cities. The ASEAN Secretariat: Jakarta, Indonesia. pp. 1–56. ISSN 2721-8058. https://asean.org/wpcontent/uploads/2021/08/The-ASEAN-Sustainable-Cities-June-July-2021.pdf (accessed on 11 December 2024). Search in Google Scholar

Colomina, I., Molina, P., 2014. Unmanned aerial systems for photogrammetry and remote sensing. A review. ISPRS Journal of Photogrammetry and Remote sensing, 92, pp 79-97. https://doi.org/10.1016/j.isprsjprs.2014.02.013. Search in Google Scholar

Dekolo, S., Oguwaye, L., 2005. GIS in Urban and Regional Planning. Conference: Nigerian Institute of Town Planners CPD Workshop. DOI:10.13140/2.1.1613.2482. Search in Google Scholar

Ferworn, A., Tran, J., Ufkes, A., D’Souza, A., 2011. Initial experiments on 3D modeling of complex disaster environments using unmanned aerial vehicles. In Proceedings of the 2011 IEEE International Symposium on Safety, Security, and Rescue Robotics, Kyoto, Japan, 1–5 November 2011; pp. 167–171. DOI:10.1109/SSRR.2011.6106781. Search in Google Scholar

Garstki, K., 2017. Virtual Representation: the Production of 3D Digital Artifacts. Journal of Archaeological Method and Theory, 24, pp.726–750. https://doi.org/10.1007/s10816-016-9285-z. Search in Google Scholar

Granshaw, S.I., 2018. RPV, UAV, UAS, RPAS or Just Drone? The Photogrammetric Record. 33(162), pp. 160–170. DOI: 10.1111/phor.12244. Search in Google Scholar

Grecea, C., Herban, S., Vilceanu, C.B., 2016. WebGIS Solution for Urban Planning Strategies. Procedia Engineering, 161, pp.1625-1630. https://doi.org/10.1016/j.proeng.2016.08.637. Search in Google Scholar

Gupta, S.G., Ghonge, M.M., Jawandhiya, P.M, 2013. Review of unmanned aircraft system (UAS), International Journal of Advanced Research in Computer Engineering & Technology, 2(4), pp.1646-1658. DOI: 10.2139/ssrn.3451039 Search in Google Scholar

Hu, D., Minner, J., 2023. UAVs and 3D City Modelling to Aid Urban Planning and Historic Preservation: A Systematic Review. Remote Sensing, 15, 5507. https://doi.org/10.3390/rs15235507. Search in Google Scholar

Jawd, S.M., Almuhana, W.H.Y., Hussein, H.A., 2021. Technologies and Types of Remote Sensors. Journal of Advances in Electrical Devices, 6(03), pp.15–23. https://matjournals.co.in/index.php/JAED/article/view/2859. Search in Google Scholar

Malaker, T., Meng, Q., 2024. Urban Disparity Analytics Using GIS: A Systematic Review. Sustainability, 16, 5956. https://doi.org/10.3390/su16145956. Search in Google Scholar

Muhmad Kamarulzaman, A.M., Wan Mohd Jaafar, W.S., Mohd Said, M.N., Saad, S.N.M., Mohan, M., 2023. UAV Implementations in Urban Planning and Related Sectors of Rapidly Developing Nations: A Review and Future Perspectives for Malaysia. Remote Sensing, 15, 2845. https://doi.org/10.3390/rs15112845. Search in Google Scholar

Nor, M.M., Mohd Noor, N., 2018. Integrating Satellite Temporal Analysis for Urban Morphology Study in Melaka. IOP Conference Series: Earth and Environmental Science, 169, 012028. DOI:10.1088/1755-1315/169/1/012028. Search in Google Scholar

Podaru, O., 2020. A simple problem, complicated by jurisprudence: the legal nature of urban planning documentation (PUG, PUZ, PUD). Studia Universitatis Babes-Bolyai Iurisprudentia, 65(1), pp.69-101. DOI:10.24193/SUBBiur.65(2020).1.4. Search in Google Scholar

Soergel, U., 2010. Radar Remote Sensing of Urban Areas. Institute of Photogrammetry and GeoInformation: Hannover, Germany, Book series Remote Sensing and Digital Image Processing, 15, ISSN 2215-1842. Search in Google Scholar

Song, Y., Wang, H., Hamilton, A., Arayici, Y., 2009. Producing 3D Applications for Urban Planning by Integrating 3D Scanned Building Data with Geo-spatial Data. In: Lee, J., Zlatanova, S. (eds) 3D Geo-Information Sciences. Lecture Notes in Geoinformation and Cartography. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-540-87395-2_25. Search in Google Scholar

Steuteville, R. et al., 2018. “25 Great Ideas of New Urbanism”; Public Square: La Mesa, CA, USA. https://www.cnu.org/sites/default/files/25-great-ideas-book.pdf (accessed on 13 November 2024). Search in Google Scholar

Waheeb, S.A., Zerouali, B., Elbeltagi, A., Alwetaishi, M., Wong, Y.J., Bailek, N., AlSaggaf, A.A., Abd Elrahman, S.I.M., Santos, C.A.G., Majrashi, A.A., 2023. Enhancing Sustainable Urban Planning through GIS and Multiple-Criteria Decision Analysis: A Case Study of Green Space Infrastructure in Taif Province, Saudi Arabia. Water, 15, 3031. https://doi.org/10.3390/w15173031. Search in Google Scholar

Wang, C., Wen, C., Dai, Y., Yu, S., Liu, M., 2020. Urban 3D modeling using mobile laser scanning: a review. Virtual Reality & Intelligent Hardware, 2(3), pp.175–212. https://doi.org/10.1016/j.vrih.2020.05.003. Search in Google Scholar

Whitehurst, D., Friedman, B., Kochersberger, K., Sridhar, V., Weeks, J., 2021. Drone-Based Community Assessment, Planning, and Disaster Risk Management for Sustainable Development. Remote Sensing, 13, 1739. https://doi.org/10.3390/rs13091739. Search in Google Scholar

World Bank Group, 2017. Tapping the Potential of Drones for Development. Available online: https://www.worldbank.org/en/topic/transport/brief/drones-fordevelopment. print (accessed on 28 November 2024). Search in Google Scholar

Xhafa, S., Kosovrasti, A., 2015. Geographic Information Systems (GIS) in Urban Planning. European Journal of Interdisciplinary Studies, 1(1), pp.74-81. DOI:10.26417/ejis.v1i1.p85-92. Search in Google Scholar

Yao, H., Qin, R., Chen, X., 2019. Unmanned Aerial Vehicle for Remote Sensing Applications—A Review. Remote Sensing, 11, 1443. https://doi.org/10.3390/rs11121443. Search in Google Scholar

Zhang, X.; Kusrini, K., 2021. Autonomous Long-Range Drone Detection System for Critical Infrastructure Safety. Multimedia Tools and Applications, 80, pp.23723–23743. https://doi.org/10.1007/s11042-020-10231-x. Search in Google Scholar

Zhu, W., Cao, Z., Luo, P., Tang, Z., Zhang, Y., Hu, M., He, B., 2022. Urban Flood-Related Remote Sensing: Research Trends, Gaps and Opportunities. Remote Sensing, 14, 5505. https://doi.org/10.3390/rs14215505. Search in Google Scholar