Flight evaluation of advanced flight control systems and cockpit displays for powered-lift STOL Aircraft
James A. Franklin, Donald W. Smith, De Lamar M. Watson, D. N. Warner, R. C. Innis, G. H. Hardy
Abstract
Open-access reader
James A. Franklin, Donald W. Smith, De Lamar M. Watson, D. N. Warner, R. C. Innis, G. H. Hardy
Abstract
Open-access reader
A flight research program was conducted to assess the improvements, in longitudinal path control during a STOL approach and landing, that can be achieved with manual and automatic control system concepts and cockpit displays with various degrees of complexity. NASA-Ames powered-lift Augmentor Wing Research Aircraft was used in the research program. Satisfactory flying qualities were demonstrated for selected stabilization and command augmentation systems and flight director combinations. The ability of the pilot to perform precise landings at low touchdown sink rates with a gentle flare maneuver was also achieved. The path-control improvement is considered to be applicable to other powered-lift aircraft configurations.
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A flight research program was conducted to assess the improvements, in longitudinal path control during a STOL approach and landing, that can be achieved with manual and automatic control system concepts and cockpit displays with various degrees of complexity. NASA-Ames powered-lift Augmentor Wing Research Aircraft was used in the research program. Satisfactory flying qualities were demonstrated for selected stabilization and command augmentation systems and flight director combinations. The ability of the pilot to perform precise landings at low touchdown sink rates with a gentle flare maneuver was also achieved. The path-control improvement is considered to be applicable to other powered-lift aircraft configurations.
Key concepts: Touchdown, Cockpit, Aeronautics, Fly-by-wire, Flight simulator, Lift (data mining), Flight management system, Engineering