Flight flutter-test results of the first aeroelastic research wing (ARW-1) of NASA's drones for aerodynamic and structural testing program are presented. The flight-test operation and the implementation of the active flutter-suppression system are described as well as the software techniques used to obtain real-time damping estimates and the actual flutter testing procedure. Real-time analysis of fast-frequency aileron excitation sweeps provided reliable damping estimates. The open-loop flutter boundary was well defined at two altitudes; a maximum Mach number of 0.91 was obtained. Both open-loop and closed-loop data were of exceptionally high quality. Although the flutter-suppression system provided augmented damping at speeds below the flu...
The goal of this program was to combine modern control concepts with new identification techniques t...
Douglas Aircraft Company experience in flight flutter testing is reviewed briefly, with comments on ...
The important algorithm issues necessary to achieve a real time flutter monitoring system; namely, t...
In response to the concerns of the aeroelastic community, NASA Dryden Flight Research Center, Edward...
A study to develop analytical procedures to be used in the checkout and calibration of a flutter win...
The design of the flutter suppression system for a remotely-piloted research vehicle is described. T...
Modal identification results presented were obtained from recent flight flutter tests of a drone veh...
The final design and hardware fabrication was completed for an active control system capable of the ...
Results from flight tests of the ARW-1 research wing are presented. Preliminary loads data and exper...
This paper reviews the test techniques developed over the last several decades for flight flutter te...
A summary is presented of experiences in connection with flight flutter testing of supersonic interc...
Flight flutter testing is an integral part of flight envelope clearance. This paper discusses advanc...
Two flutter suppression control laws wre designed and tested on a low speed aeroelastic model of a D...
The process is described of analysis, design, digital implementation, and subsonic testing of an act...
Active flutter suppression control laws were designed, implemented, and tested on an aeroelastically...
The goal of this program was to combine modern control concepts with new identification techniques t...
Douglas Aircraft Company experience in flight flutter testing is reviewed briefly, with comments on ...
The important algorithm issues necessary to achieve a real time flutter monitoring system; namely, t...
In response to the concerns of the aeroelastic community, NASA Dryden Flight Research Center, Edward...
A study to develop analytical procedures to be used in the checkout and calibration of a flutter win...
The design of the flutter suppression system for a remotely-piloted research vehicle is described. T...
Modal identification results presented were obtained from recent flight flutter tests of a drone veh...
The final design and hardware fabrication was completed for an active control system capable of the ...
Results from flight tests of the ARW-1 research wing are presented. Preliminary loads data and exper...
This paper reviews the test techniques developed over the last several decades for flight flutter te...
A summary is presented of experiences in connection with flight flutter testing of supersonic interc...
Flight flutter testing is an integral part of flight envelope clearance. This paper discusses advanc...
Two flutter suppression control laws wre designed and tested on a low speed aeroelastic model of a D...
The process is described of analysis, design, digital implementation, and subsonic testing of an act...
Active flutter suppression control laws were designed, implemented, and tested on an aeroelastically...
The goal of this program was to combine modern control concepts with new identification techniques t...
Douglas Aircraft Company experience in flight flutter testing is reviewed briefly, with comments on ...
The important algorithm issues necessary to achieve a real time flutter monitoring system; namely, t...