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Application of OGC Sensor Web Enablement Standards for the planning of atmospheric research flights. Thomas Everding, Marc Rautenhaus. Outline. OGC Sensor Web Enablement Experience Mission planning. Sensor Web Enablement. OGC Sensor Web Enablement. OGC Sensor Observation Service.
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Application of OGC Sensor Web Enablement Standards for the planning of atmospheric research flights Thomas Everding, Marc Rautenhaus
Outline • OGC Sensor Web Enablement • Experience • Mission planning
OGC Sensor Observation Service GetCapabilities DescribeSensor GetObservation Client SOS
Hydrology • Collaboration with the German Federal Waterways Authority • 23.000 km of maritime waterways • 7.500 km inland waterways • Owner & maintainer of the monitoring networks along the waterways ~ 10.000 sensors distributed over Germany
Hydrology • SOS enhancement for providing water level data • Pegel online SOS • Ongoing work to use SWE for all sensor related tasks
Common Problem • Legacy and proprietary data formats in use
Common Problem • Legacy and proprietary components in use
Summary • Projects show applicability of SWE in various domains • Meteorological phenomena have strong influence on other environmental phenomena • E.g. better weather forecasts allow better flooding forecasts • Show applicability of SWE for meteorology • Enhance SWE standards with requirements from the meteorological domain
Next Step into Meteorology Domain: Support Atmospheric Research Flights HALO • New German aircraft for atmospheric research • Modified Gulfstream business jet • Offers new possibilities with respect to flight range, altitude, instrument payload Challenge: Support the planning of flight routes
Interoperability Aspects for Mission Planning atmospheric predictions geodata atmospheric observations data exploration for flight route design on-demand simulations and data processing
Future Application of SWE Technology Real sensors: detection of thunderstorm cells SOS, SAS, WNS Client for mission planning SPS, SOS, WNS Kober and Tafferner (2009) Klanner (2009) Virtual sensors: control of trajectories, lidar simulation