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Development and Assessment of a Novel Training Package for Basic Maneuvering Tasks on a Flight Simulator Using Self Instruction Methods and Above Real Time Training (ARTT)One result of the relatively recent advances in computing technology has been the decreasing cost of computers and increasing computational power. This has allowed high fidelity airplane simulations to be run on personal computers (PC). Thus, simulators are now used routinely by pilots to substitute real flight hours for simulated flight hours for training for an aircraft type rating thereby reducing the cost of flight training. However, FAA regulations require that such substitution training must be supervised by Certified Flight Instructors (CFI). If the CFI presence could be reduced or eliminated for certain tasks this would mean a further cost savings to the pilot. This would require that the flight simulator have a certain level of 'intelligence' in order to provide feedback on pilot performance similar to that of a CFI. The 'intelligent' flight simulator would have at least the capability to use data gathered from the flight to create a measure for the performance of the student pilot. Also, to fully utilize the advances in computational power, the simulator would be capable of interacting with the student pilot using the best possible training interventions. This thesis reports on the two studies conducted at Tuskegee University investigating the effects of interventions on the learning of two flight maneuvers on a flight simulator and the robustness and accuracy of calculated performance indices as compared to CFI evaluations of performance. The intent of these studies is to take a step in the direction of creating an 'intelligent' flight simulator. The first study deals with the comparisons of novice pilot performance trained at different levels of above real-time to execute a level S-turn. The second study examined the effect of out-of-the-window (OTW) visual cues in the form of hoops on the performance of novice pilots learning to fly a landing approach on the flight simulator. The reliability/robustness of the computed performance metrics was assessed by comparing them with the evaluations of the landing approach maneuver by a number of CFIs.
Document ID
20070023563
Acquisition Source
Armstrong Flight Research Center
Document Type
Contractor or Grantee Report
Authors
Ali, Syed Firasat
(Tuskegee Univ. AL, United States)
Khan, M. Javed
(Tuskegee Univ. AL, United States)
Rossi, Marcia J.
(Tuskegee Univ. AL, United States)
Heath, Bruce e.
(Tuskegee Univ. AL, United States)
Crane, Peter
(Tuskegee Univ. AL, United States)
Ward, Marcus
(Tuskegee Univ. AL, United States)
Crier, Tomyka
(Tuskegee Univ. AL, United States)
Knighten, Tremaine
(Tuskegee Univ. AL, United States)
Culpepper, Christi
(Tuskegee Univ. AL, United States)
Date Acquired
August 23, 2013
Publication Date
April 1, 2007
Subject Category
Aircraft Design, Testing And Performance
Report/Patent Number
DUNNS-128214178
Funding Number(s)
CONTRACT_GRANT: NAG4-226
Distribution Limits
Public
Copyright
Public Use Permitted.
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