Drone2Map for ArcGIS: Bring Drone Imagery into ArcGIS. Will

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1 Drone2Map for ArcGIS: Bring Drone Imagery into ArcGIS Will

2 A New Window on the World Personal Mapping for Micro-Geographies Accurate High Quality Simple Low-Cost

3 Drone2Map for ArcGIS Turn Drones into Enterprise Productivity Tools ArcGIS

4 Know your Airspace

5

6

7 Drone2Map Automated and Simple Drone Data Processing Geolocated Images Keypoints and Matches GIS Ready Products

8 Drone2Map modes of operation 1. Rapid for in-field flight verification

9 Drone2Map modes of operation 1. Rapid for in-field flight verification 2. 2D mode for orthomapping Orthomosaics Digital Surface Models

10 Drone2Map modes of operation 1. Rapid for in-field flight verification 2. 2D mode for orthomapping 3. 3D mode for models of buildings & solid structures Point Clouds and Meshes 3D PDF

11 Drone2Map modes of operation 1. Rapid for in-field flight verification 2. 2D mode for orthomapping 3. 3D mode for models of buildings & solid structures 4. Inspection mode for managed high resolution imagery Smart Inspection

12 Share Drone Imagery Fast Get Imagery Products To Your Users When They Need It 2D products Tile Layers

13 Share Drone Imagery Fast Get Imagery Products To Your Users When They Need It 3D products Scene layers

14 What s New Since Beta Building a Better App with Your Contributions! Templates Offline Use Ground Control Flexible Processing 3D Mapping Process by Area

15 GROUND CONTROL What, Why and How Ground control points are features with known coordinates that can be identified in your raw images. - Coordinates must be entered into the software. Without ground control, GPS alone enables outputs that are in approximately the proper location & scale, but accuracy will be unspecified (x, y, and z). Control points are necessary to anchor your project. With adequate control, the natural rigidity of the geometry provides good accuracy between control points. Best practices: - Multiple points, distributed around project. - Survey all control in the field (if possible), with high contrast markers (Size > 10 pixels). - Some points withheld from processing as checkpoints to measure accuracy.

16 Best Practices for Drone2Map 1. Ensure your flight plan captures good quality data - Overlap ~70% or more, proper focus & exposure Side Overlap Orbit Two Forward Overlap Orbit One 2D Imagery Products Inspection and 3D Products

17 Best Practices for Drone2Map 1. Ensure your flight plan captures good quality data - Overlap ~70% or more, proper focus & exposure 2. Run initial processing without creating any outputs, then review processing report before proceeding 3. Ground control should be considered mandatory 4. If project includes oblique imagery, use a clip polygon 5. Scaling up to large projects - Duplicate images with GCPs in overlap (Future release will allow project merge) 6. Data management - All flight metadata in geodatabase - Outputs and possibly raw images managed using mosaic datasets

18 Wrightsville Beach USACE Drone2Map Project

19 Project Objectives UAS for Surveying, Engineering & Construction Elevation Wrightsville Beach Orthos 3D

20 Results UAS for Surveying, Engineering & Construction Total Area Processed Ground Control Used Photos Collected Output Parameters Oceanic Pier to Masonboro Inlet Acres 14 Points Fully Surveyed Sony R10C Total 195 / 1.25GB Collection Time < 1hr / 2flts Horizontal GSD 1.21 in 3D Points / Meter Processing Time: 4 hrs 32 mins Products Produced: Orthos, DSM, Point Cloud, 3D Mesh Overall Accuracy: Mean RMS 1.27 inches Verified by: Engineering and Survey

21 Project Comparisons Verified by: UAS vs. Conventional Survey - Accuracy - UAS is within 4 cm on control points - Cost - UAS is 30% less expensive for competitive project - Time - UAS captures greater detail in less time UAS vs. Terrestrial LiDAR - Accuracy - UAS is within 2 cm of LiDAR specifications - Cost - UAS is 15% less expensive for competitive project - Time - Similar mobilization & coverage, faster collect & processing UAS vs. Aerial LiDAR - Accuracy - UAS is within 2 cm of LiDAR specifications - Cost - UAS is 60% less expensive for competitive project - Time - Similar coverage, faster mobilization & processing

22 Demo

23 Find Out What Your Drone Can Do For You

24 Drone2Map for ArcGIS Accurate 2D & 3D Map Products ArcGIS Online Fly Drone Run App Get Map A Windows App running on a PC or Surface Tablet Standalone - does not require ArcGIS for Desktop Includes an ArcGIS Online Individual Account

25 marketplace.arcgis.com

26 Sample Data

27 Other imagery courses from Esri Instructor-led imagery course is Image Analysis with ArcGIS Imagery web-courses: Image Processing with ArcGIS Orthorectifying Satellite Imagery Using ArcGIS Change Detection Using Imagery Displaying Raster Data Using ArcGIS Georeferencing Raster Data Using ArcGIS Managing Raster Data Using ArcGIS (mosaic datasets) New, coming this fall: Displaying Raster Data Using ArcGIS Pro Processing Raster Data with ArcGIS Pro Lidar web courses: Managing Lidar Data Using LAS Datasets Managing Lidar Data Using Mosaic Datasets Managing Lidar Data Using Terrain Datasets Drone2Map Future courses are under development

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