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Structure-From-Motion Photogrammetry of Antarctic Historical Aerial Photographs in Conjunction with Ground Control Derived from Satellite Data

Sarah F. Child, L. A. Stearns, Luc Girod, Henry H. Brecher

2020Remote Sensing19 citationsDOIOpen Access PDF

Abstract

A longer temporal scale of Antarctic observations is vital to better understanding glacier dynamics and improving ice sheet model projections. One underutilized data source that expands the temporal scale is aerial photography, specifically imagery collected prior to 1990. However, processing Antarctic historical aerial imagery using modern photogrammetry software is difficult, as it requires precise information about the data collection process and extensive in situ ground control is required. Often, the necessary orientation metadata for older aerial imagery is lost and in situ data collection in regions like Antarctica is extremely difficult to obtain, limiting the use of traditional photogrammetric methods. Here, we test an alternative methodology to generate elevations from historical Antarctic aerial imagery. Instead of relying on pre-existing ground control, we use structure-from-motion photogrammetry techniques to process the imagery with manually derived ground control from high-resolution satellite imagery. This case study is based on vertical aerial image sets collected over Byrd Glacier, East Antarctica in December 1978 and January 1979. Our results are the oldest, highest resolution digital elevation models (DEMs) ever generated for an Antarctic glacier. We use these DEMs to estimate glacier dynamics and show that surface elevation of Byrd Glacier has been constant for the past ∼40 years.

Topics & Concepts

PhotogrammetryAerial photographyGeologyRemote sensingGlacierSatellite imageryScale (ratio)Elevation (ballistics)Digital elevation modelSatelliteStructure from motionCartographyGeographyMotion (physics)Artificial intelligenceGeomorphologyComputer scienceMathematicsEngineeringGeometryAerospace engineeringCryospheric studies and observationsLandslides and related hazardsWinter Sports Injuries and Performance
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