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Aerospace-Omaha DMSP/NPOESS Risk Reduction & Technology

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Aerospace-Omaha DMSP/NPOESS Risk Reduction & Technology Transition Activities PolarMax 19 October 2004 Dr. Thomas Kopp & Bruce Thomas The Aerospace Corporation – PowerPoint PPT presentation

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Title: Aerospace-Omaha DMSP/NPOESS Risk Reduction & Technology


1
Aerospace-Omaha DMSP/NPOESSRisk Reduction
Technology Transition Activities
  • PolarMax19 October 2004

Dr. Thomas Kopp Bruce Thomas The Aerospace
Corporation Meteorological Satellite Systems
2
Overview
  • Field Office Introduction
  • Risk Reduction Activities
  • Cloud Depictions Forecast System II (CDFSII)
  • NPOESS Interface Data Processing Segment (IDPS)
  • Technology Transition
  • SSMI/S Calibration Validation Support
  • METSAT Applications
  • Future Projects and Applicability

3
Intro to Aerospace-Omaha
  • The Aerospace Corporation
  • Federally Funded Research and Development Center
    (FFRDC)
  • Aligned with Systems Acquisition and Lifecycle
    System Support
  • Field Office
  • Supports DMSP SPO, its ground system, and DMSPs
    primary customer (AFWA)
  • RD resource in an operational setting
  • Comprehensive access to real-time operational
    satellite, traditional WX and NWP data
  • RD satellite data access growing, e.g. NASA EOS

4
Risk Reduction Activities
  • Historical DMSP, Cloud Depiction Forecast
    System II
  • OLS and AVHRR
  • Current NPOESS, Interface Data Processor
    Segment
  • MODIS (SERCAA, 03/04) Cloud Depictions and VIIRS
    Cloud Mask (Abbreviated, 2004)
  • Future NPOESS, Complete Cloud Products
    Algorithm Chain (2005/06)

5
CDFS II Risk Reduction
  • Initiated by AF Combat Mission Needs Statement
    (CMNS) in 1999
  • Delivered in 90 days DMSP/NOAA instance of SERCAA
    algorithms in support of the Kosovo air war
  • First ever AF 3D clouds produced using DMSP and
    NOAA fine scale data
  • DMSP Infrastructure Extended to Include
    Additional NOAA Channels SERCAA was Designed to
    Exploit
  • Discovered algorithm/model design flaws before
    implementation
  • Assembled satellite specific and constellation
    mosaics two years before CDFSII operations
  • Established correct thresholds for numerous
    individual cloud detection tests, accelerated
    CDFSII deployment

6
DMSP 3D Cloud Analysis
  • Example Cloud Products
  • Source CMNS
  • Algorithm SERCAA
  • F15 07Oct04 16Z
  • Total Cloud Amount ()
  • Visual Imagery (2.8km)

7
NPOESS IDPS Risk Reduction
  • VIIRS cloud mask (VCM) algorithm sufficiency risk
    assessment (community) resulted in IGS
    submission, Fall 2002
  • Produced 3D clouds using NASA MODIS cloud mask,
    Dec02
  • SERCAA algorithms using MODIS radiances added
    Feb04
  • Automated Aqua/Terra NH near real-time
    processing, Jun04
  • Abbreviated version of the VCM using MODIS data
    as a proxy, first executed in Jul04
  • NRT capability either MODIS-SERCAA or VIIRS
  • VCM results inserted into our 3D cloud analysis
    via heritage SERCAA 2D-gt3D techniques (24 and
    6km)
  • Focus of our current risk reduction efforts
  • Assist NGST with terminator/nighttime testing and
    tuning, conditions critical to DoD

8
Tools of the Trade
9
Example Cloud Detection/Masks
10
Cloud Algorithm Tuning Tool
11
Technology Transition (SSMI/S)
  • SSMI/S Calibration and Validation Support
  • Collection and automated data processing of DMSP
    MW sensors (SSMI/S, SSM/I, T/1, and T/2) and
    leverage NOAA AMSU A/B products
  • Collocation (temporal/spatial) of ground truth
    observations (LIDAR, Raobs) with sensor data
    (TDR, SDR, and EDRs) forms matchups
  • Document matchups with collocated NWP, CDFSII,
    SSTs and Vis/IR imagery
  • Distribute matchups in NRT to geographically
    distributed team
  • Archive all data including dependent data for
    future reprocessing

12
Technology Transition (METSAT)
  • Flexible and Rigorous Geostationary Satellite
    Data Navigation, Calibration, and Imagery
    Generation
  • User GUI to rubber band areas of interest
    (AOI), automated and radiometrically accurate
    imagery production for each AOI
  • GMS-5 and METEOSAT 5/7 (2000)
  • GOES-9/10/11/12 (2003)
  • Now in routine operations at AFWA feeding JAAWIN
  • DMSP OLSView GUI application
  • Comprehensive navigation of full spatial/spectral
    imagery
  • Spacecraft roll, pitch, yaw, and time offset
    corrections support
  • Used in assessment of F15 gyros anomalies

13
Full Orbit Visualization Tools
  • Supports Global/Regional SMD Data
  • On-board ephemeris navigation
  • Allows for satellite roll, pitch, yaw
    corrections

14
Future Work and Applicability
  • NPOESS (2005)
  • Risk reduction on VIIRS cloud properties
  • Aerospace development preparations for NPP
  • NPOESS-AFWA IDPS installation, interface
    checkout, testing, and verification
  • AFWA Involvement/Assistance (2005)
  • DMSP F17 LEO and transition to operations
  • Evolving Meteosat Second Generation (MSG)
    Exploitation
  • Architecture implications of NPP/NPOESS data
    volumes including data processing and management
    (AFW Enterprise)
  • GOES-R data acquisition, formatting, exploitation
    and product distribution
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