This paper describes a method for the acquisition of vertical and horizontal geospatial data, using a specially configured photogrammetric system. The system was equipped with a Photron Fastcam F-046C digital single-lens reflex (DSLR) camera, a total station, a flexible arm, a three-axis gimbal, and a two-motor position controller. The photogrammetric system was mounted on a pole that was mounted on a trailer. The system recorded the site at a constant height and pitch angle (20°) in both the vertical and horizontal planes. The data collected by the photogrammetric system were captured in the CAD format, which was then processed to create a geodatabase. The photogrammetric system was used to acquire data to produce a contour map of the surface of the area measured (i.e., a surface model). Geotiff files were also generated from the photogrammetric system in order to allow the data to be read into a GIS, where the data can be manipulated.
The development of a truly automated workflow to extract and generate metadata from video takes advantage of the rate at which video data is acquired. The two-dimensional correlation process allows for the automated extraction of metadata in real-time. A novel workflow was developed that is highly scalable, flexible, fast, and easy to implement. This is achieved by the use of a stream-based approach to data capture that allows for the creation of metadata at a rapid pace, as the video data is being recorded. The automated metadata collection process serves as a strong foundation for the creation of photo mosaics that have a number of commercial and scientific applications.
The integration of models with real measurements is a fundamental part of GIS. The potential of using a variety of different techniques to transform real geospatial measurements into model data has been explored for several years. The work presented here focuses on the use of stereophotogrammetry to acquire data for a variety of geospatial applications. This is mainly due to the fact that it is relatively inexpensive and simple to use. The use of stereophotogrammetry as a means of mapping a large area has been explored using a custom-built system. This system can be seen as an inexpensive alternative to the use of aircraft (e.g., UAVs), and is a more cost-effective alternative to the use of ships for survey.
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One of the drawbacks to this approach was that we needed to recompile every time we made even a small change to the code. This slowed everything else we were doing down and because we couldn't always have someone waiting for the application to finish building. 827ec27edc