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Reliability and Safety Assessment of Urban Air Mobility Concept Vehicles The primary objective of this research effort is to identify failure modes and hazards associated with several configurations of multicopter concept vehicles supplied by NASA. Functional hazard analyses (FHA) and failure modes and effects criticality analyses (FMECA) are performed for each of the eight vehicle configurations under review. Conceptual design of notional powertrain configurations (turboshaft, electric, hybrid electric), notional thrust control systems (rpm control and collective control), and navigation control systems for the concept vehicles were to support the reliability and safety analysis and to assess whether a mission can be completed safely. Two kinds of analyses are performed: static safety analysis which enable the quantification of the likelihood of individual events, and dynamic safety analyses which allows the investigation of multiple time-dependent failures. Their objective is to quantify the likelihood of catastrophic failures.
Document ID
20210017185
Acquisition Source
Ames Research Center
Document Type
Contractor Report (CR)
Authors
Cedric Justin
(Georgia Institute of Technology Atlanta, Georgia, United States)
Srujal Patel
(Georgia Institute of Technology Atlanta, Georgia, United States)
Etienne Demers Bouchard
(Georgia Institute of Technology Atlanta, Georgia, United States)
Jonathan Gladin
(Georgia Institute of Technology Atlanta, Georgia, United States)
Johannes Verberne
(Georgia Institute of Technology Atlanta, Georgia, United States)
Eddie Li
(Georgia Institute of Technology Atlanta, Georgia, United States)
Metin Ozcan
(Georgia Institute of Technology Atlanta, Georgia, United States)
Dushhyanth Rajaram
(Georgia Institute of Technology Atlanta, Georgia, United States)
Dimitri Mavris
(Georgia Institute of Technology Atlanta, Georgia, United States)
Matilde D’Arpino
(The Ohio State University Columbus, Ohio, United States)
Tunc Aldemir
(The Ohio State University Columbus, Ohio, United States)
Giorgio Rizzoni
(The Ohio State University Columbus, Ohio, United States)
Gülçin Sarıcı Türkmen
(The Ohio State University Columbus, Ohio, United States)
Michael Mayo
(Georgia Tech Research Institute Atlanta, Georgia, United States)
Court Bivens
(Georgia Tech Research Institute Atlanta, Georgia, United States)
Curtis E Hanson
(Armstrong Flight Research Center Rosamond, California, United States)
Robert M Kufeld
(Ames Research Center Mountain View, California, United States)
Date Acquired
June 8, 2021
Publication Date
March 1, 2021
Subject Category
Air Transportation And Safety
Report/Patent Number
GTRI Document No. D9015A001R2
Funding Number(s)
WBS: 664817
CONTRACT_GRANT: 80ARC020F0055
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Peer Committee
Keywords
Urban Air Mobility
Safety Assessment
Concept Vehicles
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