ATMOSPHERIC & SPACE TECHNOLOGY RESEARCH ASSOCIATES LLC — National Aeronautics and Space Administration SBIR Phase I: S14
ATMOSPHERIC & SPACE TECHNOLOGY RESEARCH ASSOCIATES LLC — SBIR Phase I award from National Aeronautics and Space Administration.
- Amount
- $156,498
- Agency
- National Aeronautics and Space Administration
- Program / Phase
- SBIR · Phase I
- Topic
- S14
- Solicitation
- SBIR_23_P1
- NAICS
- —
- Place of performance
- CO
- Period
- 2023-07-28 → 2024-02-02
Description
The NASA SBIR subtopic, S14.01 Space Weather R2O2R, discusses key risks associated with space weather effects, including risks posed to spacecraft, crew, telecommunications, satellite systems, and position, navigation, and timing services. The Heliophysics Division is seeking innovative approaches to better understand, monitor, predict and mitigate space weather impacts. Area 1 of the subtopic description expresses a need for solutions that enable the characterization and prediction of ionospheric variability, including improved forecasting of ionospheric scintillation. Area 3 of the subtopic description explains BASArsquo;s desire for innovative data assimilation and integration tools for the operational space-weather community. Orionrsquo;s ISIP.AI tool will address both of these critical needs by improving low latitude scintillation nowcasting and forecasting with an innovative machine-learning approach.nbsp;nbsp;Ionospheric scintillation is the rapid fluctuations in phase (sigma;phi;) and amplitude (S4) experienced by radio signals (up to 2 GHz) propagating through ionospheric irregularities. While scintillation severity varies, in the most severe case scintillation can make it impossible for a GNSS receiver to calculate a position. Currently, there are no reliable tools to forecast or nowcast ionospheric scintillation for a given communication link. ISIP.AI will benbsp;a first-of-its-kind tool that can improve the reliability of ground-to-space communication links by nowcasting and forecasting low-latitude scintillation. This capability can ultimately help NASA mitigate risks associated with mission-ending scintillation disruptions. nbsp;