Research Article
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Year 2022, Volume: 4 Issue: 1, 32 - 36, 06.07.2022
https://doi.org/10.53093/mephoj.1132303

Abstract

References

  • Kaya, E., & Güngör, M. (2021). Numerical data generation using unmanned aerial vehicle: a case study of Aksaray Güzelyurt District. Advanced UAV, 1(1), 34-39.
  • Şahin, V. & Yılmaz, H. M. (2021). Hacim Hesaplarında İnsansız Hava Aracı (İHA) Verilerinin Kullanılabilirliğinin Araştırılması. Türkiye İnsansız Hava Araçları Dergisi, 3 (2), 36-48. DOI: 10.51534/tiha.955271
  • Alptekin, A., & Yakar, M. (2020). Determination of pond volume with using an unmanned aerial vehicle. Mersin Photogrammetry Journal, 2(2), 59-63.
  • Ceylan, M. C. & Uysal, M. (2021). İnsansız hava aracı ile elde edilen veriler yardımıyla ağaç çıkarımı. Türkiye Fotogrametri Dergisi, 3 (1), 15-21. DOI: 10.53030/tufod.912501
  • Ünel, F. B., Kuşak, L., Çelik, M., Alptekin, A., & Yakar, M. (2020). Kıyı çizgisinin belirlenerek mülkiyet durumunun incelenmesi. Türkiye Arazi Yönetimi Dergisi, 2(1), 33-40.
  • Alptekin, A., & Yakar, M. (2021). 3D model of Üçayak Ruins obtained from point clouds. Mersin Photogrammetry Journal, 3(2), 37-40.
  • Kanun, E., Alptekin, A., & Yakar, M. (2021). Cultural heritage modelling using UAV photogrammetric methods: a case study of Kanlıdivane archeological site. Advanced UAV, 1(1), 24-33.
  • Alptekin, A., & Yakar, M. (2020). Heyelan bölgesinin İHA kullanarak modellenmesi. Türkiye İnsansız Hava Araçları Dergisi, 2(1), 17-21.
  • Zeybek, M., & Şanlıoğlu, İ. (2020). Investigation of landslide detection using radial basis functions: a case study of the Taşkent landslide, Turkey. Environmental monitoring and assessment, 192(4), 1-19.
  • Alptekin, A., Çelik, M. Ö., Doğan, Y., & Yakar, M. (2019). Mapping of a rockfall site with an unmanned aerial vehicle. Mersin Photogrammetry Journal, 1(1), 12-16.
  • Karabacak, A. (2021). İnsansız hava araçları (İHA) İle enerji nakil hatlarının ölçülmesi üzerine derleme. Türkiye Fotogrametri Dergisi, 3(1), 1-8.
  • Papakonstantinou, A., Topouzelis, K., & Pavlogeorgatos, G. (2016). Coastline zones identification and 3D coastal mapping using UAV spatial data. ISPRS International Journal of Geo-Information, 5(6), 75.
  • Zeybek, M., & Biçici, S. (2020). Road distress measurements using UAV. Turkish Journal of Remote Sensing and GIS, 1(1), 13-23.
  • Zeybek, M. (2021). Classification of UAV point clouds by random forest machine learning algorithm. Turkish Journal of Engineering, 5(2), 48-57.
  • Lucieer, A., Jong, S. M. D., & Turner, D. (2014). Mapping landslide displacements using Structure from Motion (SfM) and image correlation of multi-temporal UAV photography. Progress in physical geography, 38(1), 97-116.
  • Kabadayı, A. (2021). Unmanned aerial vehicle usage in rough areas and photogrammetric data generation. Advanced UAV, 1(1), 8-14.

Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry

Year 2022, Volume: 4 Issue: 1, 32 - 36, 06.07.2022
https://doi.org/10.53093/mephoj.1132303

Abstract

Modelling the terrain with high accuracy is vital to create modern settlement areas, and to find solutions that threaten the people. Traditional land surveying is a time-consuming and expensive method. Unmanned aerial vehicle (UAV) is a powered aerial vehicle without a human operator. UAV related case study publications have been increased since last two decades. Detailed three-dimensional (3D) information on the land surface can be obtained from high spatial resolution point clouds. Modelling the terrain requires up-to date information. UAV can provide high-resolution images with low cost in the order of centimeters. We can reconstruct the terrain in a 3D representation using photogrammetry. In this study, we model a village located in Aksaray city using UAV photogrammetry. We created the orthomosaic and Digital Surface Map (DSM) of the region to characterize the terrain in detail. The obtained model and maps will help us to generate modern living space.

References

  • Kaya, E., & Güngör, M. (2021). Numerical data generation using unmanned aerial vehicle: a case study of Aksaray Güzelyurt District. Advanced UAV, 1(1), 34-39.
  • Şahin, V. & Yılmaz, H. M. (2021). Hacim Hesaplarında İnsansız Hava Aracı (İHA) Verilerinin Kullanılabilirliğinin Araştırılması. Türkiye İnsansız Hava Araçları Dergisi, 3 (2), 36-48. DOI: 10.51534/tiha.955271
  • Alptekin, A., & Yakar, M. (2020). Determination of pond volume with using an unmanned aerial vehicle. Mersin Photogrammetry Journal, 2(2), 59-63.
  • Ceylan, M. C. & Uysal, M. (2021). İnsansız hava aracı ile elde edilen veriler yardımıyla ağaç çıkarımı. Türkiye Fotogrametri Dergisi, 3 (1), 15-21. DOI: 10.53030/tufod.912501
  • Ünel, F. B., Kuşak, L., Çelik, M., Alptekin, A., & Yakar, M. (2020). Kıyı çizgisinin belirlenerek mülkiyet durumunun incelenmesi. Türkiye Arazi Yönetimi Dergisi, 2(1), 33-40.
  • Alptekin, A., & Yakar, M. (2021). 3D model of Üçayak Ruins obtained from point clouds. Mersin Photogrammetry Journal, 3(2), 37-40.
  • Kanun, E., Alptekin, A., & Yakar, M. (2021). Cultural heritage modelling using UAV photogrammetric methods: a case study of Kanlıdivane archeological site. Advanced UAV, 1(1), 24-33.
  • Alptekin, A., & Yakar, M. (2020). Heyelan bölgesinin İHA kullanarak modellenmesi. Türkiye İnsansız Hava Araçları Dergisi, 2(1), 17-21.
  • Zeybek, M., & Şanlıoğlu, İ. (2020). Investigation of landslide detection using radial basis functions: a case study of the Taşkent landslide, Turkey. Environmental monitoring and assessment, 192(4), 1-19.
  • Alptekin, A., Çelik, M. Ö., Doğan, Y., & Yakar, M. (2019). Mapping of a rockfall site with an unmanned aerial vehicle. Mersin Photogrammetry Journal, 1(1), 12-16.
  • Karabacak, A. (2021). İnsansız hava araçları (İHA) İle enerji nakil hatlarının ölçülmesi üzerine derleme. Türkiye Fotogrametri Dergisi, 3(1), 1-8.
  • Papakonstantinou, A., Topouzelis, K., & Pavlogeorgatos, G. (2016). Coastline zones identification and 3D coastal mapping using UAV spatial data. ISPRS International Journal of Geo-Information, 5(6), 75.
  • Zeybek, M., & Biçici, S. (2020). Road distress measurements using UAV. Turkish Journal of Remote Sensing and GIS, 1(1), 13-23.
  • Zeybek, M. (2021). Classification of UAV point clouds by random forest machine learning algorithm. Turkish Journal of Engineering, 5(2), 48-57.
  • Lucieer, A., Jong, S. M. D., & Turner, D. (2014). Mapping landslide displacements using Structure from Motion (SfM) and image correlation of multi-temporal UAV photography. Progress in physical geography, 38(1), 97-116.
  • Kabadayı, A. (2021). Unmanned aerial vehicle usage in rough areas and photogrammetric data generation. Advanced UAV, 1(1), 8-14.
There are 16 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Articles
Authors

Hacı Murat Yılmaz 0000-0002-9725-5792

Nusret Aktan 0000-0003-2582-9395

Adem Çolak 0000-0003-2582-9395

Aydın Alptekin 0000-0002-5605-0758

Publication Date July 6, 2022
Published in Issue Year 2022 Volume: 4 Issue: 1

Cite

APA Yılmaz, H. M., Aktan, N., Çolak, A., Alptekin, A. (2022). Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry. Mersin Photogrammetry Journal, 4(1), 32-36. https://doi.org/10.53093/mephoj.1132303
AMA Yılmaz HM, Aktan N, Çolak A, Alptekin A. Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry. MEPHOJ. July 2022;4(1):32-36. doi:10.53093/mephoj.1132303
Chicago Yılmaz, Hacı Murat, Nusret Aktan, Adem Çolak, and Aydın Alptekin. “Modelling Ozancık Village (Aksaray) in Computer Environment Using UAV Photogrammetry”. Mersin Photogrammetry Journal 4, no. 1 (July 2022): 32-36. https://doi.org/10.53093/mephoj.1132303.
EndNote Yılmaz HM, Aktan N, Çolak A, Alptekin A (July 1, 2022) Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry. Mersin Photogrammetry Journal 4 1 32–36.
IEEE H. M. Yılmaz, N. Aktan, A. Çolak, and A. Alptekin, “Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry”, MEPHOJ, vol. 4, no. 1, pp. 32–36, 2022, doi: 10.53093/mephoj.1132303.
ISNAD Yılmaz, Hacı Murat et al. “Modelling Ozancık Village (Aksaray) in Computer Environment Using UAV Photogrammetry”. Mersin Photogrammetry Journal 4/1 (July 2022), 32-36. https://doi.org/10.53093/mephoj.1132303.
JAMA Yılmaz HM, Aktan N, Çolak A, Alptekin A. Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry. MEPHOJ. 2022;4:32–36.
MLA Yılmaz, Hacı Murat et al. “Modelling Ozancık Village (Aksaray) in Computer Environment Using UAV Photogrammetry”. Mersin Photogrammetry Journal, vol. 4, no. 1, 2022, pp. 32-36, doi:10.53093/mephoj.1132303.
Vancouver Yılmaz HM, Aktan N, Çolak A, Alptekin A. Modelling Ozancık village (Aksaray) in computer environment using UAV photogrammetry. MEPHOJ. 2022;4(1):32-6.