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1 Services Engine The HICO Online Processing System: A Web-Enabled Coastal Hyperspectral Imagery Processing System All rights reserved. ENVI, IDL and Jagwire are trademarks of Exelis, Inc. All other marks are the property of their respective owners. 2014, Exelis Visual Information Solutions, Inc
2 The HICO Online Processing System: AW Web-Enabled be bl dc Coastal lh Hyperspectral li Imagery Processing System Esri UC July 2014 San Diego, CA James Goodman, PhD, PE President / CEO HySpeed Computing jgoodman@hyspeedcomputing.com In partnership with:
3 Hyperspectral Imager for the Coastal Ocean First spaceborne imaging spectrometer uniquely designed to sample the coastal ocean Instrument overview: Launched September 2009 on the HTV Japanese Experiment Module Exposed Facility Samples 50 x 2000 km per scene at 90 m resolution Spectral coverage nm at 5.7 nm resolution Initially sponsored by Office of Naval Research Currently support by NASA (image credits: NASA)
4 ENVI Services Engine Allows deployment of traditional ENVI/IDL desktop capabilities into on-line, on-demand environments
5 HICO Image Pre-Processing Processing steps prior to deployment in ESE include both atmospheric correction and improved geo-location HICO Raw Atmospheric Correction Tafkaa Improved Geo-Location Registration to Landsat L1T HICO Scene
6 Image Processing Workflows Algorithms are being implemented using workflows, whereby sequential processing steps are explicitly linked in the interface HICO Scene Land/Cloud Mask Chl Algorithm Image Difference 3-Band Image Chl_OC4 = OC4 chlorophyll concentration (mg m -3 ) Chl_OCI = OCI chlorophyll concentration (mg m -3 ) Chl _diff = chlorophyll op concentration ce o difference e (mg m -3 ) OC4 - O Reilly et al. 2000; OCI - Hu et al. 2012
7 Additional Algorithms Additional workflows and algorithms include a land/cloud mask, quasi-analytical algorithm, and a semi-analytical inversion model User Input: Threshold HICO Scene Land/Cloud Mask 1-Band Image mask = 0 for land/cloud; 1 for water NDWI - McFeeters 1996 HICO Scene Land/Cloud Mask QAA Algorithm 4-Band Image a438 = total absorption (m -1 ) aph438 = phytoplankton absorption (m -1 ) adg438 = detritus/gelbstoff absorption (m -1 ) bbp438 = particle backscattering (m -1 ) bb438 = total backscattering (m -1 ) QAAv5 - Lee et al. 2009, 2002 HICO Scene Land/Cloud Mask Inversion Model 7-Band Image aph440 = phytoplankton absorption (m -1 ) adg440 = detritus/gelbstoff absorption (m -1 ) bbp440 = particle/angle/sea state absorption (m -1 ) B550 = bottom albedo ( - ) H = water depth (m) a438 = total t absorption (m -1 ) bb438 = total backscattering (m -1 ) Goodman et al. 2008; Lee et al. 1999, 1998
8 HICO Data Locations A list of 20 top-priority high-quality scenes have been identified for inclusion in the prototype processing system Columbia River San Francisco Bay Monterey Bay St Joseph Bay Key Largo Martha s Vineyard Chesapeake Bay Onslow Bay Bahamas Acqua Alta Turkish Straits Yellow River Han River Montgomery Reef Darwin Harbor Noumea Shark Bay Heron Island Punta Rasa Christchurch
9 HICO Image Processing System Development of a prototype cloud computing system for the processing, analysis and visualization of HICO imagery
10 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
11 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
12 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
13 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
14 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
15 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
16 HICO Image Processing System Example output for chlorophyll concentration in the Florida Keys
17 Example Chl OC4 Output Processing tool facilitates on-demand implementation of algorithms across a global range of HICO scenes Onslow Bay St Joseph Bay Darwin Harbor Columbia River Acqua Alta
18 Future Development A look ahead at the prototype completion and plans for future development into an operational system Prototype deployment: Scheduled for completion in July 2014 Prototype t system to be available for 6 months Science community is encouraged to test/evaluate Operational system: Ideally - Installation on server where data resides Development of data library and data ingest tools Implementation of additional algorithms and analytics
19 Thank You! For more information: Project sponsorship: Center for the Advancement of Science in Space Special thanks to: Curtiss Davis Jasmine Nahorniak
20 All rights reserved. ENVI, IDL and Jagwire are trademarks of Exelis, Inc. All other marks are the property of their respective owners. 2014, Exelis Visual Information Solutions, Inc
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