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OSM Ski Resort Routing

Published:04 November 2021Publication History

ABSTRACT

We present OSM Ski Resort Routing, an app that combines the concept of pathfinding and navigation with skiing. It provides an interactive 2D and 3D visualisation of arbitrary ski resorts using OpenStreetMap data and can be used to compute and display the optimal route between any waypoints in the resort.

References

  1. 2021. FATMAP.com. https://fatmap.com/. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  2. 2021. Google Maps. https://www.google.com/maps. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  3. 2021. LibGDX GitHub. https://github.com/libgdx/libgdx/. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  4. 2021. Mapnik Wiki Article. https://wiki.openstreetmap.org/wiki/Mapnik. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  5. 2021. Openskimap.org. https://openskimap.org. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  6. 2021. Opensnowmap.org. https://opensnowmap.org. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  7. 2021. OpenStreetMap. https://www.openstreetmap.org. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  8. 2021. OSM Ski Resort Routing: Source code. https://gitlab.com/CHfCGS/osmskiresortrouting.Google ScholarGoogle Scholar
  9. 2021. Overpass API Wiki Article. https://wiki.openstreetmap.org/wiki/Overpass_API. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  10. 2021. United States Geological Survey: Shuttle Radar Topography Mission (SRTM) 1 Arc-Second Global. https://www.usgs.gov/centers/eros/science/usgs-eros-archive- digital-elevation-shuttle-radar-topography-mission- srtm-1-arc. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  11. Jonathan de Ferranti. 2021. Elevation Data. https://www.usgs.gov/centers/eros/science/usgs-eros-archive-digital-elevation-shuttle-radar-topography-mission-srtm-1-arc. Last accessed 26 Apr 2021.Google ScholarGoogle Scholar
  12. Mark D Dunlop, Brian Elsey, and Michelle Montgomery Masters. 2007. Dynamic visualisation of ski data: a context aware mobile piste map. In Proceedings of the 9th international conference on Human computer interaction with mobile devices and services. 375--378.Google ScholarGoogle ScholarDigital LibraryDigital Library

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  1. OSM Ski Resort Routing

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    • Published in

      cover image ACM Conferences
      SIGSPATIAL '21: Proceedings of the 29th International Conference on Advances in Geographic Information Systems
      November 2021
      700 pages
      ISBN:9781450386647
      DOI:10.1145/3474717

      Copyright © 2021 ACM

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      Association for Computing Machinery

      New York, NY, United States

      Publication History

      • Published: 4 November 2021

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      • research-article
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      • Refereed limited

      Acceptance Rates

      Overall Acceptance Rate220of1,116submissions,20%

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