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88 results for “orthomosaic”
Ugum (NFWF 1) Orthomosaic (RGB) - May 14 2022
<p>This orthomosaic of Talofofo, Guam was created from 353 images taken on May 14 2024, at 400 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using DroneDeploy.<br><br></p> <p>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087)."</p>
Ugum NFWF 2 (RGB) Orthomosaic - Talofofo, Guam
<p>This orthomosaic of Talofofo, Guam was created from 759 images taken on August 23 2024, at 100 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using DroneDeploy.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087).</p>
Ugum NFWF 1 (RGB) Orthomosaic - Talofofo, Guam
<p>This orthomosaic of Talofofo, Guam was created from 353 images taken on August 23 2024, at 100 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using DroneDeploy.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087).</p>
USDA Farm Orthomosaic - Michael Aguon - RGB (August 30 2024)
<p>This orthomosaic of Michael Aguons Farm - Malojloj, Guam was created from 621 images taken on August 30 2024, at 250 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using Drone Deploy.<br><br>This project was made possible through funding by the following grant(s): USDA - Partnerships for Climate-Smart Commodities (30-2F-311262-R-5).</p>
Ugum Orthomosaic (LiDAR)
<p>This orthomosaic of Talofofo, Guam was created from 261 images taken on August 23 2024, at 300ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using DJI Terra.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087).</p>
Cocos Lagoon Orthomosaic (RGB) - September 9, 2024
<p>This orthomosaic of Malesso, Guam was created from 782 images taken on Septmeber 9 2024, at 400ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using Pix4D Mapper.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087).</p>
Quinene Orthomosaic - RGB (April 29 2024)
<p>This orthomosaic of Quinene (Malesso), Guam was created from 1229 images taken on April 29 2024, at 400 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using DroneDeploy.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (80NSSC22M0052), NASA Guam Space Grant (80NSSC20M0039 / UH Subaward: MA1550), and PI-CASC (G19AC00087).</p>
USDA Farm Orthomosaic - Mr. Liu (RGB)
<p>This orthomosaic of Malojloj, Guam was created from 57 images taken on October 24 2024, at 200 ft AGL, with a M350. The mission was planned using the DJI Pilot application and post-processed using Drone Deploy.<br><br>This project was made possible through funding by the following grant(s): NASA Guam EPSCoR (30-2F-311184-R-5), NASA Guam Space Grant (30-2F-315105-R), and PI-CASC (30-2F-315100-R-5).</p>
Nelson Island South Shetlands orthomosaic tiles
<p>These data are georeferenced TIF files from an orthomosaic constructed using aerial stills imagery collected by a DJI Phantom 4 Pro. The orthomosaic is of Harmony Point on Nelson Island in the South Shetland Islands, Antarctic Peninusla, and was created using Agisoft Metashape Professional v1.6.3. </p>
DTM and orthomosaic of a shallow water area near Allacciante - Valgrande channels (Venice Lagoon, Italy) - BRAHMS project
<p>DTM and orthomosaic model of a 6-by-12-m shallow water area (average depth about 1.5 m) on a subidal flat near Allacciante and Valgrande channels, Lagoon of Venice (IT), generated by SfM photogrammetric approach. Photos were acquired on 11 May 2022 by a snorkel diver holding a hydrodynamic board equipped with 4 synchronized action cameras, 50-90 cm from the seafloor. Two pairs of cameras were fixed to the board 70 cm apart, each pair consisting of one camera facing nadir and one inclined approx. 45°. Cameras were set in time-lapse mode (2 fps, wide FoV, ISO 100-400). To cover the area, the diver swimmed back and forth, producing a pattern mostly composed of 11 longitudinal swaths partially overlapping. Reel lines were preliminarily deployed on the seafloor as a guide, together with 5 photogrammetric plates (33x33 cm). For each of 4 vertices and 5 plates, lat/long coordinates were acquired with Trimble SPS585 GNSS receiver (RTK corrections) and z-value as water depth measured with RBR solo<sup>3</sup> depth logger. Analyses were perfomed with Agisoft Metashape. Sparse point cloud reconstruction was carried out through incremental alignment procedure, with a total of 2668 photos alligned. DTM (in m, water surface during depth measurements being zero elevation) was created with dense cloud basis and WGS84/UTM 33N projection. Orthomosaic was created based on DTM and same coordinate system. Scaling and georeferentiation were based on 9 ground control points (4 vertices and 5 plates). The resolution of DTM and orthomosaic are 2.01 mm/pix and 0.503 mm/pix, respectively.</p>
DTM and orthomosaic of a shallow water area near Lazzareto Nuovo island (Venice Lagoon, Italy) - BRAHMS project
<p>DTM and orthomosaic model of a 6-by-12-m shallow water area (average depth about 1.5 m) along a minor tidal channel branching from Canale Carbonera near Lazzareto Nuovo island, Lagoon of Venice (IT), generated by SfM photogrammetric approach. Photos were acquired on 6 October 2022 by a snorkel diver holding a hydrodynamic board equipped with 4 synchronized action cameras, 70-120 cm from the seafloor. Two pairs of cameras were fixed to the board 70 cm apart, each pair consisting of one camera facing nadir and one inclined approx. 45°. Cameras were set in time-lapse mode (2 fps, wide FoV, ISO 100-400). To cover the area, the diver swimmed back and forth, producing a pattern mostly composed of 12 longitudinal swaths partially overlapping. Reel lines were preliminarily deployed on the seafloor as a guide, together with 5 photogrammetric plates (33x33 cm). For each of 4 vertices and 5 plates, lat/long coordinates were acquired with Trimble SPS585 GNSS receiver (RTK corrections) and z-value as water depth measured with RBR solo<sup>3</sup> depth logger. Analyses were perfomed with Agisoft Metashape. Sparse point cloud reconstruction was carried out through incremental alignment procedure, with a total of 3815 photos alligned. DTM (in m, water surface during depth measurements being zero elevation) was created with dense cloud as basis and WGS84/UTM 33N projection. Orthomosaic was created based on DTM and same coordinate system. Scaling and georeferentiation were based on 9 ground control points (4 vertices and 5 plates). The resolution of DTM and orthomosaic are 1.28 mm/pix and 0.32 mm/pix, respectively.</p>
Post-Typhoon Mawar Orthomosaic – Ritidian, Guam
<p>This orthomosaic was created from 276 images taken on 08 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic – Tumon, Guam
<p>This orthomosaic was created from 2040 images taken on 27 May 2023, at 800 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic – Hagatna, Guam
<p>This orthomosaic was created from 1974 images taken on 27 May 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic - Astumbo, Guam
<p>This orthomosaic was created from 1208 images taken on 08 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic - Okkodo, Guam
<p>This orthomosaic was created from 595 images taken on 08 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p> <p>The University of Guam Drone Corps (funded by NASA Guam Space Grant and NASA Guam EPSCoR) and the National Weather Service Guam retain all rights to the aerial imagery, including but not limited to copyrights and intellectual property rights. Any unauthorized modification, reproduction, or distribution of the imagery is strictly prohibited.</p> <p>By using this data, you acknowledge and agree to abide by the terms and conditions set forth in this disclaimer.</p> <p>Privacy Disclaimer: The aerial imagery captured for damage assessment may inadvertently include images of private property and individuals. While every effort has been made to respect privacy, it is possible that identifiable information or sensitive locations may be visible in the imagery. University of Guam Drone Corps and the National Weather Service Guam disclaim any responsibility for the unintentional collection or dissemination of such information. The recipient(s) of this imagery are urged to handle it with due care and take necessary precautions to protect the privacy rights of individuals and comply with applicable privacy laws and regulations.</p>
Post-Typhoon Mawar Orthomosaic – Piti, Guam
<p>This orthomosaic was created from 1661 images taken on 05 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic – Dededo2A, Guam
<p>This orthomosaic was created from 482 images taken on 02 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
Post-Typhoon Mawar Orthomosaic - Agat, Guam
<p>This orthomosaic was created from 1293 images taken on 06 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p> <p>The University of Guam Drone Corps (funded by NASA Guam Space Grant and NASA Guam EPSCoR) and the National Weather Service Guam retain all rights to the aerial imagery, including but not limited to copyrights and intellectual property rights. Any unauthorized modification, reproduction, or distribution of the imagery is strictly prohibited.</p> <p>By using this data, you acknowledge and agree to abide by the terms and conditions set forth in this disclaimer.</p> <p>Privacy Disclaimer: The aerial imagery captured for damage assessment may inadvertently include images of private property and individuals. While every effort has been made to respect privacy, it is possible that identifiable information or sensitive locations may be visible in the imagery. University of Guam Drone Corps and the National Weather Service Guam disclaim any responsibility for the unintentional collection or dissemination of such information. The recipient(s) of this imagery are urged to handle it with due care and take necessary precautions to protect the privacy rights of individuals and comply with applicable privacy laws and regulations.</p>
Post-Typhoon Mawar Orthomosaic – Pago Bay, Guam
<p>This orthomosaic was created from 372 images taken on 07 June 2023, at 699 ft AGL, with a DJI P1 Sensor mounted to a DJI Matrice 300 UAV. The mission was planned using the UGCS application and post-processed using DroneDeploy. </p> <p>The following aerial imagery is intended solely for the purpose of assessing damages to the natural and built environment associated with Typhoon Mawar. Typhoon Mawar's closest approach to Guam was 24 May 2023. It is strictly prohibited to distribute this imagery to any unauthorized individuals or third-party entities without prior authorization.</p>
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