AIRS Applications: Status, Applications Vs. Traditional Science
Proceedings of NASA Atmospheric Infrared Sounder Spring Science Team Meeting (AIRS 2016)
Engineering topics
Publications and source records attributed to Pagano, Tom.
Proceedings of NASA Atmospheric Infrared Sounder Spring Science Team Meeting (AIRS 2016)
No abstract available
No abstract available
No abstract available
We investigate uncertainties in the Atmospheric Infrared Sounder (AIRS) radiances based on in-flight and preflight calibration algorithms and observations. The global coverage and spectra1 resolution ((lamda)/(Delta)(lamda) ~ 1200) of AIRS enable it to produce a data set that can be used as a climate data record over the lifetime of the instrument. Therefore, we examine the effects of the uncertainties in the calibration and the detector stability on future climate studies. The uncertainties of the parameters that go into the AIRS radiometric calibration are propagated to estimate the accuracy of the radiances and any climate data record created from AIRS measurements. The calculated radiance uncertainties are consistent with observations. Algorithm enhancements may be able to reduce the radiance uncertainties by as much as 7%. We find that the orbital variation of the gain contributes a brightness temperature bias of < 0.01 K.