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SOLAR RADIATION IS THE CRITICAL SOURCE OF ENERGY FOR THE MAJORITY OF BIOLOGICAL PROCESSES ON EARTH. THE SUN DRIVES THE EARTH S ENERGY BALANCE AND IS CRITICAL TO OUR UNDERSTANDING OF THE ATMOSPHERE AND CLIMATE. SOPHISTICATED MODELS WITH IMPORTANT SOCIETAL IMPACTS SUCH AS ATMOSPHERIC CONDITIONS AND CLIMATE CHANGE DEMAND AN ACCURATE AND PRECISE ENERGY INPUT. CURRENT ERA MEASUREMENTS OF TOTAL SOLAR IRRADIANCE BEGAN IN 1979 WITH NASA'S EARTH RADIATION BUDGET (ERB) SATELLITE AND CONTINUE TODAY THROUGH THE SOLAR RADIATION AND CLIMATE EXPERIMENT (SORCE). HOWEVER THIS INSTRUMENT HAS HAD COVERAGE GAPS DUE TO HARDWARE PROBLEMS AND COULD REACH END OF LIFE BEFORE THE PLANNED SUCCESSOR MISSION NOAA S TOTAL SOLAR IRRADIANCE SENSOR (TSIS). THE TOTAL SOLAR IRRADIANCE CALIBRATION TRANSFER EXPERIMENT (TCTE) WAS LAUNCHED IN 2013 TO CONTINUE COVERAGE POST-SORCE. HOWEVER THIS INSTRUMENT IS INTENDED FOR ONLY A 1.5 YEAR LIFETIME. FUTURE COVERAGE GAPS ARE THEREFORE AN INCREASINGLY LIKELY PROBLEM IN A TIME WHEN CLIMATE MODELING HAS BECOME INCREASINGLY IMPORTANT. CALIBRATION BETWEEN MISSIONS IS NECESSARY TO MAINTAIN DATA INTEGRITY AND IS RENDERED IMPOSSIBLE WHEN ONE MISSION ENDS BEFORE THE LAUNCH OF ITS SUCCESSOR. LASTLY THE SORCE DATA REQUIRES RECALIBRATION TO ACCOUNT FOR INSTRUMENT DEGRADATION ADDING ADDITIONAL COST AND UNCERTAINTY TO THE DATA. WE PROPOSE A NEW MODEL FOR SPECTRAL SOLAR IRRADIANCE MONITORING. INSTEAD OF LARGE SCALE LONG LEAD HIGH COST AND INHERENTLY RISKY INSTRUMENTATION WE PROPOSE TO INVESTIGATE A DISTRIBUTED NETWORK OF LOW COST LOW RISK COMMERCIAL OFF THE SHELF (COTS) BASED REPLACEABLE SPECTRAL IRRADIANCE MONITORING CUBESATS. THIS NETWORK WOULD PROVIDE COMPLEMENTARY DATA TO AID THE CALIBRATION OF EXISTING INSTRUMENTS AS WELL AS A MEANS OF PROVIDING CONTINUITY BETWEEN MISSIONS AT LOW COST. WE PROPOSE TO ENGAGE WITH THE UNIVERSITY OF COLORADO IN SUPPORTING A SENIOR DESIGN TEAM WITHIN THE DEPARTMENT OF AEROSPACE ENGINEERING TO DEVELOP A 2U CUBESAT PROTOTYPE INSTRUMENT. THIS PROTOTYPE WILL INCORPORATE A PAIR OF UV-VIS SPECTROMETERS (200-1100NM DETECTOR SENSITIVITY). THE INSTRUMENT WOULD BE TESTED USING A RIDE-ALONG OPPORTUNITY ON AN EXISTING NASA SUPPORTED HIGH ALTITUDE LONG DURATION SCIENTIFIC BALLOON (HIWIND) SCHEDULED FOR AN ANTARCTIC FLIGHT IN 2017. BY USING THIS PLATFORM WE CAN LEVERAGE THE EXISTING INFRASTRUCTURE AND PROVE THE SCIENTIFIC INSTRUMENT WITH MINIMAL COST AND RISK. THIS FLIGHT QUALIFICATION ON A BALLOON WHILE NOT A PERFECT SPACE QUALIFICATION WILL SIGNIFICANTLY REDUCE THE RISK FOR FUTURE SPACE FLIGHT BY TESTING THE INSTRUMENT IN CHALLENGING TEMPERATURE RANGES (-50 TO 30 CELSIUS) LOW POWER AVAILABILITY TIGHT SPACE CONSTRAINTS ETC.. BY USING THE CUBESAT FORM FACTOR THIS INSTRUMENT CAN THEN BE AUGMENTED IN THE FUTURE WITH AVAILABLE COTS ATTITUDE CONTROL AND TELEMETRY MODULES NEEDED FOR SPACE FLIGHT. THE LONG TERM PLAN (FOR FUTURE PROPOSALS) IS TO PARTNER WITH COMMERCIAL (E.G. IRIDIUM NEXT COMMUNICATION PROVIDERS ETC.) SATELLITE PROVIDERS TO LAUNCH THESE AS PIGGYBACK MODULES WITH A BUSINESS MODEL OF PROVIDING SPECTRAL IRRADIANCE DATA TO COMMERCIAL AND GOVERNMENT INTERESTS. THE PRECISION OF IRRADIANCE MEASUREMENTS WOULD THEN BE OBTAINED NOT BY EXPENSIVE INSTRUMENTATION BUT BY THE STATISTICAL NOISE REDUCTION GAINED FROM A NETWORK OF MULTIPLE INSTRUMENTS. THIS PROPOSAL FITS WITHIN THE NASA SCIENCE PLAN WHICH PRIORITIZES NEW SUSTAINED SOLAR IRRADIANCE MEASUREMENTS AS A NATIONAL PRIORITY PARTICULARLY IN THE 2020 TIMEFRAME. ADDITIONALLY THE HELIOPHYSICS DECADAL REVIEW SETS PRIORITY TO ESTABLISH MECHANISMS FOR MAINTENANCE AND CONTINUITY OF ESSENTIAL LONG-TERM DATA SETS AND EXPLICITLY LISTS SOLAR SPECTRAL IRRADIANCE. WE PROPOSE THAT A DISTRIBUTED NETWORK OF SOLAR SPECTRAL IRRADIANCE MONITORING CUBESATS IS A PROMISING CONCEPT TO ACHIEVE THESE KEY GOALS. THIS PATHFINDER MISSION IS LOW COST HAS STRONG STUDENT INVOLVEMENT PROMOTES EARLY CAREER DEVELOPMENT AND IS PERFECTLY TIMED TO LEVERAGE AN OPPORTUNI

$443,854FY2017National Aeronautics and Space AdministrationNASA

University Corporation For Atmospheric Research

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