Documents / Report

UAP Independent Study Team Final Report

NASA · 2023-09-14 · 36 pages · text from the file's own layer

This is the final report of NASA's Unidentified Anomalous Phenomena Independent Study Team, a 16-member external panel chaired by Dr. David Spergel, with a foreword by Dr. Nicola Fox. The report says it is not a review of past incidents. It concludes that UAP analysis is limited by poor data, calibration and metadata, and that NASA should support AARO's whole-of-government effort. It recommends using NASA satellites, commercial imagery, AI, crowdsourcing apps and the Aviation Safety Reporting System, and reducing stigma around reporting.

16
approach, on the other hand, requires an understanding of what is considered
normal and known in a given search area, which can then be distinguished from
what is unusual and unknown. AARO has already begun this task by studying
what “normal” phenomena such as solar glint or balloons look like to military
sensors. The program of systematically calibrating observations of “normal” is
an essential step before starting to search for the abnormal.
A third potential avenue for scientific analysis is to cross-correlate NASA’s
extensive databases with the locations and times of reported UAP events.
Once an extensive list of UAP reports is made available, the panel regards this
as a promising method for future analysis. Again, NASA's expertise in AI and
ML will allow it to make a prominent contribution.
For any scientific analysis purposes, including UAP analysis, it is essential that
the data used for AI and ML are collected according to rigorous standards. The
data must be collected using calibrated instruments tailored to their respective
use cases accompanied by metadata to facilitate calibration and contextual
comprehension. Proper curation and integration of data are also critical for
enabling scientific analysis. To establish a baseline understanding, an exam-
ination of known events with precisely calibrated instruments is also neces-
sary. NASA, with its expertise in data calibration, management, and advanced
analysis is well-positioned to take a central role in these efforts within the
whole-of-government framework to assess UAP.
Observations of UAP to date are inconsistent and do not adhere to similar
characteristics. As a consequence, it is difficult to put physical constraints on
them at present, which provides a strong motivation for the rigorous, evidence-
based framework articulated in this report. The strongest physical constraints
are not on the anomalous events but on the conventional events: we know the
range of velocities and accelerations that can be achieved by state-of-the art
platforms, drones, balloons and planes. Deviations from this behavior, such as
any well-characterized observation of velocities and accelerations outside of
that range, are scientifically interesting for UAP assessment and analysis. The
panel emphasizes that clearly determining distances is key to understanding
and corroborating any claimed anomalous high-velocity and high-acceleration
events, a fact borne out by AARO’s findings that the vast majority of UAP have
prosaic explanations.
In considering the factors above, what basic physical constraints
can be placed on the nature and origins of UAP?
5
FINDING
NASA, with its expertise in data calibration,
management, and advanced analysis is
well-positioned to take a central role in
these efforts.

Not linked to a story yet.

About this file

Report, cited by the archive. The PDF is mirrored here; the original link is above. 36 pages are in the text index: search them above, or from the library's search.