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Assessment and Validation of Collision "Consequence" Method of Assessing Orbital Regime Risk Posed by Potential Satellite ConjunctionsCollision risk management theory requires a thorough assessment of both the likelihood and consequence of potential collision events. Satellite conjunction risk assessment has produced a highly-developed theory for assessing the likelihood of collision but neglects to account for the consequences of a given collision. While any collision may compromise the operational survival of a spacecraft, the amount of debris produced by the potential collision, and therefore the degree to which the orbital corridor may be compromised, can vary greatly among satellite conjunctions. Previous studies leveraged work on satellite collision modeling to develop a method to estimate whether a particular collision is likely to produce a relatively large or relatively small amount of resultant debris. The approximation of the number of debris pieces is dependent on a mass estimation process for the secondary objects utilizing the radar cross section of said object. This study examines the validity of the mass estimation process and establishes uncertainty bounds on the secondary object mass, which will be used to best approximate the possible consequences of a potential collision. This process is then applied to a large set of historical conjunctions to assess the frequency at which possible collisions may significantly augment the orbital debris environment in operational spacecraft.
Document ID
20190002601
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Lechtenberg, Travis F.
(Omitron, Inc. Colorado Springs, CO, United States)
Hejduk, Matthew D.
(Astrorum Consulting, LLC Waco, TX, United States)
Date Acquired
April 18, 2019
Publication Date
April 17, 2019
Subject Category
Space Transportation And Safety
Report/Patent Number
GSFC-E-DAA-TN64218
Meeting Information
Meeting: 2019 Hypervelocity Impact Symposium
Location: Destin, FL
Country: United States
Start Date: April 14, 2019
End Date: April 19, 2019
Sponsors: Hypervelocity Impact Society
Funding Number(s)
CONTRACT_GRANT: NNG11VH00B
CONTRACT_GRANT: NNG14VC09C
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Collision Consequence
Risk Analysis
Satellite Conjunction
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