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  5. A Study to Evaluate the Suitability of a Centrifuge as a Dynamic Flight Simulator for F/A-18 Strike Fighter Mission Training
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A Study to Evaluate the Suitability of a Centrifuge as a Dynamic Flight Simulator for F/A-18 Strike Fighter Mission Training

Date Issued
December 1, 2009
Author(s)
Masica, Richard Michael
Advisor(s)
Richard Ranaudo
Additional Advisor(s)
Richard Ranaudo
Uwe P. Solies
Frank G. Collins
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/41671
Abstract

The purpose of this study was to evaluate the suitability of using an existing 25-ft radius centrifuge as a dynamic flight simulator for “full mission” F/A-18 strike fighter mission training with respect to the representativeness of pilot-perceived motion and acceleration cues.


The methodology employed in this study consisted of analyzing F/A-18 mission tasks, collecting pilot opinion surveys of important sensory cues needed in simulator training, and conducting an analysis of human pilot perceptual problems caused by centrifuge motion constraints.

This study identified a number of issues indicating that a centrifuge-based flight simulator shows limited potential for use in “full mission” F/A-18 training scenarios. Specifically, there is a fundamental mismatch between the 6 degree-of-freedom mission-representative acceleration environment experienced in the aircraft and the 3 degree-of-freedom acceleration environment the centrifuge is able to provide. The centrifuge is not optimized for the typical acceleration environment experienced during F/A-18 missions and has significant limitations in “near one g” and “near zero g” flight conditions. Additionally, the centrifuge causes a variety of undesired, unrealistic, and debilitating vestibular artifacts that are not consistent with what a pilot experiences in the aircraft when performing the same mission task, degrading the effectiveness of training.

Despite its limited suitability as a “full mission” F/A-18 simulator, the centrifuge is an essential physiological training device, shows good potential as a part-task trainer for departure/spin training, and should continue to play a role in the F/A-18 training continuum.

Subjects

Centrifuge-Based Flig...

Disciplines
Engineering
Degree
Master of Science
Major
Aviation Systems
Embargo Date
December 1, 2011
File(s)
Thumbnail Image
Name

MASICA_THESIS_Ver2.7

Size

25.72 MB

Format

Unknown

Checksum (MD5)

9d9612461bbc70b65950d3b9220979f1

Thumbnail Image
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masicamostrecent.pdf

Size

13.09 MB

Format

Adobe PDF

Checksum (MD5)

4f23217c4af29f8864aa45db99a98453


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