A Direct Application of the Non-linear Inverse Transformation Flight Control System Design on a STOVL Aircraft
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Page : 34 pages
File Size : 42,13 MB
Release : 1993
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Page : 34 pages
File Size : 42,13 MB
Release : 1993
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Author : National Aeronautics and Space Administration (NASA)
Publisher : Createspace Independent Publishing Platform
Page : 30 pages
File Size : 13,53 MB
Release : 2018-06-28
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ISBN : 9781721998845
The nonlinear inverse transformation flight control system design method is applied to the Lockheed Ft. Worth Company's E-7D short takeoff and vertical land (STOVL) supersonic fighter/attack aircraft design with a modified General Electric F110 engine which has augmented propulsive lift capability. The system is fully augmented to provide flight path control and velocity control, and rate command attitude hold for angular axes during the transition and hover operations. In cruise mode, the flight control system is configured to provide direct thrust command, rate command attitude hold for pitch and roll axes, and sideslip command with turn coordination. A control selector based on the nonlinear inverse transformation method is designed specifically to be compatible with the propulsion system's physical configuration which has a two dimensional convergent-divergent aft nozzle, a vectorable ventral nozzle, and a thrust augmented ejector. The nonlinear inverse transformation is used to determine the propulsive forces and nozzle deflections, which in combination with the aerodynamic forces and moments (including propulsive induced contributions), and gravitational force, are required to achieve the longitudinal and vertical acceleration commands. The longitudinal control axes are fully decoupled within the propulsion system's performance envelope. A piloted motion-base flight simulation was conducted on the Vertical Motion Simulator (VMS) at NASA Ames Research Center to examine the handling qualities of this design. Based on results of the simulation, refinements to the control system have been made and will also be covered in the report. Chung, W. W. and Mcneill, W. E. and Stortz, M. W. Ames Research Center RTOP 533-02-37...
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Page : 652 pages
File Size : 28,56 MB
Release : 1994
Category : Aeronautics
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Page : 66 pages
File Size : 39,79 MB
Release : 1995
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Page : 1142 pages
File Size : 37,1 MB
Release : 1994
Category : Science
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Page : 1042 pages
File Size : 45,78 MB
Release : 1999
Category : Aeronautics
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Page : 1372 pages
File Size : 36,3 MB
Release : 1994
Category : Government reports announcements & index
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Page : 392 pages
File Size : 43,55 MB
Release : 1994
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Page : 1096 pages
File Size : 24,64 MB
Release : 1961
Category : Mechanics, Applied
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Author : American Institute of Aeronautics and Astronautics. Technical Information Service
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Page : 196 pages
File Size : 20,61 MB
Release : 1993
Category : AIAA paper
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