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serve as Operating Agent for this task and has secured an agreement for minimal collaboration by both the IEA Photovoltaic Power Systems (PVPS) and the Solar Power and Chemical Energy Systems (Solar PACES) Executive Committees. 4. Planned FY 2005 Activities With the work accomplished in FY 2004, we are now in a position to evaluate model performance and quantify the feasibility of producing an updated NSRDB. By examining tools, input data availability, processing constraints, and uncertainties of the output product, we will be able to develop a NSRDB update plan. Toward that end, we will work on the following: • Complete model evaluation and make recommendations on which model to use. • Develop recommendations for NSRDB update methods. • Solicit input from NSRDB stakeholders. • Develop an NSRDB update plan. • Produce the ten-year NSRDB update. • Implement the Solar Resource Knowledge Management task through international technical collaboration and a technical meeting to be held in conjunction with the Solar World Congress in Orlando, FL, August 6–12, 2005. 5. Major FY 2004 Publications S. Wilcox et al., "Progress on an Updated National Solar Radiation Data Base," Proceedings of the American Solar Energy Society, July 2004, Portland, OR. R. Perez et al., "Status of High Resolution Solar Irradiance Mapping from Satellite Data," Proceedings of the American Solar Energy Society, July 2004, Portland, OR. C. Gueymard, "High Performance Model for Clear-Sky Irradiance and Illuminance," Proceedings of the American Solar Energy Society, July 2004, Portland, OR. 6. University and Industry Partners The following organizations partnered in the Project’s research activities during FY 2004 (no cost share). Organization/ Principal Investigator State University of New York, Albany Richard Perez Solar Consultant Services Chris Gueymard Location/e-mail Albany, NY perez@asrc.cestm.albany.edu New Myrna Beach, FL Chris@SolarConsultingServices.com Description/Title of Research Activity Make improvements to satellite model for producing hourly solar estimates on a 10-km grid. Developed methods for estimating aerosols from MISR satellite data and ground-based AERONET data. FY 2004 ($K) 50 20 University of Oregon Frank Vignola Eugene, OR fev@uoregon.edu Developed recommendations for correcting data from rotating shadowband radiometers for use in NSRDB. 20PDF Image | FY 2004 ANNUAL REPORT DOE Solar
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