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Helicopter Flight Simulation Motion Platform Requirements

AUTHOR Nasa, National Aeronautics and Space Adm
PUBLISHER Independently Published (09/23/2018)
PRODUCT TYPE Paperback (Paperback)

Description
To determine motion fidelity requirements, a series of piloted simulations was performed. Several key results were found. First, lateral and vertical translational platform cues had significant effects on fidelity. Their presence improved performance and reduced pilot workload. Second, yaw and roll rotational platform cues were not as important as the translational platform cues. In particular, the yaw rotational motion platform cue did not appear at all useful in improving performance or reducing workload. Third, when the lateral translational platform cue was combined with visual yaw rotational cues, pilots believed the platform was rotating when it was not. Thus, simulator systems can be made more efficient by proper combination of platform and visual cues. Fourth, motion fidelity specifications were revised that now provide simulator users with a better prediction of motion fidelity based upon the frequency responses of their motion control laws. Fifth, vertical platform motion affected pilot estimates of steady-state altitude during altitude repositioning. Finally, the combined results led to a general method for configuring helicopter motion systems and for developing simulator tasks that more likely represent actual flight. The overall results can serve as a guide to future simulator designers and to today's operators.Schroeder, Jeffery AllynAmes Research CenterFLIGHT SIMULATION; HELICOPTERS; ESTIMATES; VERTICAL MOTION; VISUAL STIMULI; YAW; CONTROL THEORY; CUES; PREDICTIONS; ROTATION; STEADY STATE; WORKLOADS (PSYCHOPHYSIOLOGY)...
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Product Details
ISBN-13: 9781723955440
ISBN-10: 1723955442
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 94
Carton Quantity: 43
Product Dimensions: 8.50 x 0.19 x 11.02 inches
Weight: 0.53 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Space Science - General
Descriptions, Reviews, Etc.
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To determine motion fidelity requirements, a series of piloted simulations was performed. Several key results were found. First, lateral and vertical translational platform cues had significant effects on fidelity. Their presence improved performance and reduced pilot workload. Second, yaw and roll rotational platform cues were not as important as the translational platform cues. In particular, the yaw rotational motion platform cue did not appear at all useful in improving performance or reducing workload. Third, when the lateral translational platform cue was combined with visual yaw rotational cues, pilots believed the platform was rotating when it was not. Thus, simulator systems can be made more efficient by proper combination of platform and visual cues. Fourth, motion fidelity specifications were revised that now provide simulator users with a better prediction of motion fidelity based upon the frequency responses of their motion control laws. Fifth, vertical platform motion affected pilot estimates of steady-state altitude during altitude repositioning. Finally, the combined results led to a general method for configuring helicopter motion systems and for developing simulator tasks that more likely represent actual flight. The overall results can serve as a guide to future simulator designers and to today's operators.Schroeder, Jeffery AllynAmes Research CenterFLIGHT SIMULATION; HELICOPTERS; ESTIMATES; VERTICAL MOTION; VISUAL STIMULI; YAW; CONTROL THEORY; CUES; PREDICTIONS; ROTATION; STEADY STATE; WORKLOADS (PSYCHOPHYSIOLOGY)...
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Paperback