703
Views
23
CrossRef citations to date
0
Altmetric
Drones Paper

Accuracy of stockpile estimates using low-cost sUAS photogrammetry

ORCID Icon, ORCID Icon, , , , & show all
Pages 4512-4529 | Received 07 Aug 2019, Accepted 23 Nov 2019, Published online: 15 Feb 2020

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Nicole Lopes Bento, Gabriel Araújo E Silva Ferraz, Rafael Alexandre Pena Barata, Lucas Santos Santana, Brenon Diennevan Souza Barbosa, Leonardo Conti, Valentina Becciolini & Giuseppe Rossi. (2022) Overlap influence in images obtained by an unmanned aerial vehicle on a digital terrain model of altimetric precision. European Journal of Remote Sensing 55:1, pages 263-276.
Read now
Sander Varbla, Raido Puust & Artu Ellmann. (2021) Accuracy assessment of RTK-GNSS equipped UAV conducted as-built surveys for construction site modelling. Survey Review 53:381, pages 477-492.
Read now

Articles from other publishers (21)

Muskan Sharma KuinkelChengyi ZhangPeng LiuKhaled Ksaibati. (2024) Assessing the Feasibility of Utilizing UAVs and Laser Scanning for Quantifying Landfilled Fly Ash. Assessing the Feasibility of Utilizing UAVs and Laser Scanning for Quantifying Landfilled Fly Ash.
Justin Anthony Mahlberg, Haydn Malackowski, Mina Joseph, Yerassyl Koshan, Raja Manish, Zach DeLoach, Ayman Habib & Darcy M. Bullock. (2024) Statewide Implementation of Salt Stockpile Inventory Using LiDAR Measurements: Case Study. Remote Sensing 16:2, pages 410.
Crossref
Wahib Saif & Adel Alshibani. (2023) A close-range photogrammetric model for tracking and performance-based forecasting earthmoving operations. Construction Innovation 24:1, pages 164-195.
Crossref
Ahmad Alsayed & Mostafa R. A. Nabawy. (2023) Stockpile Volume Estimation in Open and Confined Environments: A Review. Drones 7:8, pages 537.
Crossref
Jidong Liu, Seyyed Meghdad Hasheminasab, Tian Zhou, Raja Manish & Ayman Habib. (2023) An Image-Aided Sparse Point Cloud Registration Strategy for Managing Stockpiles in Dome Storage Facilities. Remote Sensing 15:2, pages 504.
Crossref
Jūratė SUŽIEDELYTĖ VISOCKIENĖ, Eglė TUMELIENĖ, Maris KALINKA, Ingars ERIŅŠ, Viktorija VAIVODE, Lauris GOLDBERGS, Ieva KORNA, Rolands SMIRNOVS & Kirils GOROVOJS. 3D spatial data for building management case study. 3D spatial data for building management case study.
Helia Farhood, Samuel Muller & Amin Beheshti. 2023. Proceedings of the Second International Conference on Innovations in Computing Research (ICR’23). Proceedings of the Second International Conference on Innovations in Computing Research (ICR’23) 28 39 .
Justin Anthony Mahlberg, Raja Manish, Yerassyl Koshan, Mina Joseph, Jidong Liu, Timothy Wells, Jeremy McGuffey, Ayman Habib & Darcy M. Bullock. (2022) Salt Stockpile Inventory Management Using LiDAR Volumetric Measurements. Remote Sensing 14:19, pages 4802.
Crossref
Alexandre Araujo Ribeiro Freire, Mauro Antonio Homem Antunes, Murilo Machado de Barros, Wagner Dias de Souza, Wesley de Sousa da Silva & Thaís Machado de Souza. (2022) Similarity Analysis between Contour Lines by Remotely Piloted Aircraft and Topography Using Hausdorff Distance: Application on Contour Planting. Remote Sensing 14:14, pages 3269.
Crossref
Lin Fu, Jun Zhu, Jianbo Lai, Weilian Li, Pei Dang, Lingzhi Yin, Jialuo Li, Yukun Guo & Jigang You. (2022) A Three-Dimensional Visualization and Optimization Method of Landslide Disaster Scenes Guided by Knowledge. ISPRS International Journal of Geo-Information 11:6, pages 340.
Crossref
Lucas Santos Santana, Gabriel Araújo e Silva Ferraz, Diego Bedin Marin, Rafael de Oliveira Faria, Mozarte Santos Santana, Giuseppe Rossi & Enrico Palchetti. (2022) Digital Terrain Modelling by Remotely Piloted Aircraft: Optimization and Geometric Uncertainties in Precision Coffee Growing Projects. Remote Sensing 14:4, pages 911.
Crossref
Timofey Filkin, Natalia Sliusar, Marion Huber-Humer, Marco Ritzkowski & Vladimir Korotaev. (2022) Estimation of dump and landfill waste volumes using unmanned aerial systems. Waste Management 139, pages 301-308.
Crossref
Wahib Saif & Adel Alshibani. (2022) Smartphone-Based Photogrammetry Assessment in Comparison with a Compact Camera for Construction Management Applications. Applied Sciences 12:3, pages 1053.
Crossref
Raja Manish, Seyyed Meghdad Hasheminasab, Jidong Liu, Yerassyl Koshan, Justin Anthony Mahlberg, Yi-Chun Lin, Radhika Ravi, Tian Zhou, Jeremy McGuffey, Timothy Wells, Darcy Bullock & Ayman Habib. (2022) Image-Aided LiDAR Mapping Platform and Data Processing Strategy for Stockpile Volume Estimation. Remote Sensing 14:1, pages 231.
Crossref
Zhihua Xu, Xingzheng Lu, Ershuai Xu & Lin Xia. (2022) A Sliding System Based on Single-Pulse Scanner and Rangefinder for Pile Inventory. IEEE Geoscience and Remote Sensing Letters 19, pages 1-5.
Crossref
Chao Wu, Yongbo Yuan, Yang Tang & Boquan Tian. (2021) Application of Terrestrial Laser Scanning (TLS) in the Architecture, Engineering and Construction (AEC) Industry. Sensors 22:1, pages 265.
Crossref
Lin Fu, Jun Zhu, Wei-lian Li, Ji-gang You & Zhang-yu Hua. (2021) Fast estimation method of volumes of landslide deposit by the 3D reconstruction of smartphone images. Landslides 18:9, pages 3269-3278.
Crossref
Ahmad Alsayed, Akilu Yunusa-Kaltungo, Mark K. Quinn, Farshad Arvin & Mostafa R. A. Nabawy. (2021) Drone-Assisted Confined Space Inspection and Stockpile Volume Estimation. Remote Sensing 13:17, pages 3356.
Crossref
Ahmad Alsayed, Mostafa R. Nabawy, Akilu Yunusa-Kaltungo, Farshad Arvin & Mark K. Quinn. (2021) Enhancing 1D LiDAR Scanning for Accurate Stockpile Volume Estimation Within Drone-Based Mapping Systems. Enhancing 1D LiDAR Scanning for Accurate Stockpile Volume Estimation Within Drone-Based Mapping Systems.
Conor McMahon, Omar E. Mora & Michael J. Starek. (2021) Evaluating the Performance of sUAS Photogrammetry with PPK Positioning for Infrastructure Mapping. Drones 5:2, pages 50.
Crossref
Abdullah M. Almeshal, Mohammad R. Alenezi & Abdullah K. Alshatti. (2020) Accuracy Assessment of Small Unmanned Aerial Vehicle for Traffic Accident Photogrammetry in the Extreme Operating Conditions of Kuwait. Information 11:9, pages 442.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.