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BRIDGING BETWEEN EOS AND NPOESS

BRIDGING BETWEEN EOS AND NPOESS. R. Taylor 1 , S. Neeck 1 , M. Crison 2 and F. Bordi 3 1 Goddard Space Flight Center, Greenbelt, MD 20771 USA 2 NPOESS Integrated Program Office, Silver Spring, MD 20910 USA 3 Computer Sciences Corporation, Seabrook, MD 20706 USA

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BRIDGING BETWEEN EOS AND NPOESS

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  1. BRIDGING BETWEEN EOS AND NPOESS R. Taylor1, S. Neeck1, M. Crison2 and F. Bordi3 1Goddard Space Flight Center, Greenbelt, MD 20771 USA 2 NPOESS Integrated Program Office, Silver Spring, MD 20910 USA 3 Computer Sciences Corporation, Seabrook, MD 20706 USA Presented at the European Symposium on Remote Sensing Florence, Italy September 20 – 24, 1999

  2. Contents • Why NPP? • EOS-2 climate variability and trend • EOS-3 global terrestrial and oceanic productivity • Integrated Schedule • Mission Concept • Mission Partners • Contributions to NASA Earth Science • Contributions to NPOESS • Mission Architecture Concept • Instruments • Conclusion

  3. WHY NPP? Report of Post-2002 Mission Studies, Easton, MD, USA: • EOS-1: Land Cover / Land Use Inventory • EOS-2: Climate Variability and Trend • EOS-3: Global Terrestrial and Oceanic Productivity • EOS-4: Total Solar Irradiance Monitoring • EOS-5: Ocean Surface Wind Measurement • EOS-6: Ocean Surface Topography • EOS-7: Stratospheric Composition Measurement • EOS-8: Topography and Surface Change • EOS-9: Global Precipitation • EOS-10: Polar Altimetry • OP-1: Advanced Sounding = NPP

  4. Integrated Schedule 99 00 01 02 03 04 05 06 07 08 09 10 11 12 13 14 15 16 17 18 FY 0530 DMSP NPOESS Windsat/Coriolis 0730-1030 DMSP POES METOP Nodal Crossing Time Terra NPP 1330 POES NPOESS EOS-PM

  5. Mission Concept EOS = Earth Observing System NPOESS = National Polar-orbiting Environmental Satellite System

  6. Mission Partners • NASA • Joint Program Management • Mission systems engineering, integration, and test • ATMS • Spacecraft and integration • Launch • Science data capability • IPO • Joint Program Management • Augmented VIIRS • CrIS • Command, Communications, Control Segment (C3S) • Interface Data Processor Segment (IDPS) • Mission Operations

  7. Contributions to NASA Earth Science ATMOSPHERE Cloud Properties Atmospheric Temperature Atmospheric Humidity Aerosol Properties OCEANS Surface Temperature Phytoplankton and Dissolved Organic Matter • LAND SURFACE • Vegetation Dynamics • Fire Occurrence • Surface Temperature • Volcanic Effects • CRYOSPHERE • Sea Ice (secondary) • Snow Cover (secondary)

  8. Contributions to NPOESS • Instrument Risk Reduction • Ground System Risk Reduction • Early User Evaluation of NPOESS data products

  9. Mission Architecture Concept Launch Support Segment Space Segment Raw SMD Telemetry I/F Data Processing Segment Comnd, Ctrl and Comm Segment RDRs Science Data Segment User Community RDRs, SDRs, EDRs Archive and Distribution Segment IPO NASA NOAA (TBR)

  10. Advanced Technology Microwave Sounder (ATMS) • In conjunction with CrIS, daily global observation of atmospheric temperature and humidity profiles • Multi-channel scanning microwave total power radiometer • 2300 km swath, 66 Kg, 0.3 Kbps avg.

  11. Cross-Track Infrared Sounder (CrIS) • In conjunction with ATMS, daily global observation of atmospheric temperature and humidity profiles • Michelson interferometer infrared sounder covering 3.5 – 16 mm • 2300 km swath, 81 Kg, 1.5 Mbps avg.

  12. Visible/Infrared Imager/Radiometer Suite (VIIRS) • Daily global observation of land, oceans, and atmosphere for climate research and weather forecasting • Multispectral (visible through thermal infrared) scanning radiometer • 3000 km swath, 200 Kg, 8 Mbps avg.

  13. Conclusion • Proceeding with Mission Formulation • Offers benefits to research and operational communities • Calibrated, geo-located, global observations for research after EOS Terra and PM • Incorporate lessons-learned from EOS Terra and PM into NPP in the areas of instruments, calibration, validation, spacecraft, and ground processing • A key benefit to operational community is early evaluation of NPOESS-like data • Allows for the calibration/validation of sensors & algorithms • Facilitates the transition to using NPOESS data • Website: http://jointmission.gsfc.nasa.gov

  14. Backup

  15. Mission Objectives • Provide NASA with continuation of global change observations after Earth Observing System (EOS) TERRA and EOS PM • Provide National Polar-orbiting Operational Environmental Satellite System (NPOESS) with risk reduction demonstration and validation for 3 of the 4 critical NPOESS sensors, algorithms, and processing

  16. Spacecraft Estimated Mass: 1400 Kg Estimated Power: 1000W

  17. Launch Vehicle Med-Lite Class Delta 7320 – 9.5

  18. Environmental Data Records and Science Data Products VIIRS Imagery Sea Surface Temperature Soil Moisture Aerosol Optical Thickness Aerosol Particle Size Suspended Matter Precipitable Water (secondary) Cloud Base Height Cloud Cover / Layers Cloud Effective Particle Size Cloud Optical Thickness Cloud Top Height Cloud Top Pressure Cloud Top Temperature VIIRS (cont’d) Albedo (Surface) Land Surface Temperature Normalized Differential Vegetation Index Snow Cover / Depth Vegetation Index / Surface Type Currents Fresh Water Ice Ice Surface Temperature Littoral Sediment Transport Net Heat Flux Ocean Color / ChlorophyII Sea Ice Age / Edge Motion Mass Loading / Turbidity Active Fire Products

  19. Environmental Data Records and Science Data Products (cont’d) • CrIS / ATMS • Atmospheric Temperature Profile • Atmospheric Humidity Profile

  20. Web Sites • NPP Web Site • http://jointmission.gsfc.nasa.gov • EOS-G Program Web Site • http://eos.gsfc.nasa.gov • EOS Science Web Site • http://eospso.gsfc.nasa.gov • NPOESS Web Site • http://www.ipo.noaa.gov

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