GEO AIP-2 Kickoff

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GEO AIP-2 Kickoff Workflow

description

GEO AIP-2 Kickoff. Workflow. Service Orchestration - Sensor Access Services. Example workflows: Multi-mission programming Fine dust forecast maps Flood monitoring Other examples: OWS-3, OWS-4 (SPS & WCTS) Supported Specifications: EO Profile for SPS (OGC 07-018) - PowerPoint PPT Presentation

Transcript of GEO AIP-2 Kickoff

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GEO AIP-2 Kickoff

Workflow

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Service Orchestration - Sensor Access Services

• Example workflows:

– Multi-mission programming

– Fine dust forecast maps

– Flood monitoring

– Other examples: OWS-3, OWS-4 (SPS & WCTS)

• Supported Specifications:

– EO Profile for SPS (OGC 07-018)

– Sensor Observation Service

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• Supports Multi-Mission programming request definition:

– Help the user to identify suitable missions associated to his/her need on the basis of :

• Mission technical capabilities;

• Capacity to perform acquisition combining several missions (patchwork solution).

– Help user to perform the order submission and to follow-up his/her order.

Multi-mission Programming

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COMU – Multi-mission Programming

• Based on EO Profile for Sensor Planning Service

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Submit Workflow (BPEL)

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Fine dust (PM10) forecast maps

• Forecasts of fine dust (PM10) concentrations by neural network.

• Currently based on in-situ measurements at ±50 locations.

• Current maps are created by simple spatial interpolation (inverse distance weighting).

• Spatial coverage to be improved by incorporation of Aerosol Optical Depth (AOD) maps.

• Fusion of PM10 and AOD by VITO’s RIO interpolation model.

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Web Service at IRCEL

BPEL Workflow

OrderOrder

DiscoverServiceDiscoverService

AODToolkit

OVLForecast

Model

PM10 measurements

RIOInterpolation

Model

Log inRequest access

Log inRequest access

SOSPM10

Web Service at Vito

WMS PM10Maps

WCS/WMSAOD

Access Order

Results

Access Order

Results

View SOS/WMSView SOS/WMS

SSE Portal

SOSForecasts

OVL Forecasts

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Fine Dust Forecast Result

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Flood Monitoring and SAR tasking

• Need for geographical data before, during and after flood events.• Radar imagery best suited but tasking is a lengthy process.

• Reduce time to acquire SAR imagery by triggering Tasking Feasibility Request based on in-situ water-level measurements or river basin model outcome.

• Alert from in-situ network will initiate a chain of events.• In situ data:

– Water level gauges on Ijzer bassin– Morecombe Bay (UK) Flood alerts

• EO sensors:– GetFeasibility for ESA sensors

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BPEL Workflow

SubscribeSubscribe

DiscoverServiceDiscoverService

Log inRequest access

Log inRequest access

Web Service

ReceiveFeasibilityReceive

Feasibility

SSE Portal

FMNotification

Broker

AlertWaterb.

Lab

Flood Monitoring

SPS

FMNotificationPublisher

AlertMorecambe

Bay

SOSWaterb

Lab

Flood Monitoring

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Flood Monitoring

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Thanks for your interest

• For further details please contact– [email protected] (here, but in catalogues)– [email protected] (back in Frascati)

– Or try services.eoportal.org and give feedback to http://services.eoportal.org/portal/system/UserFeedback.do