Digital-flutter-suppression-system investigations for the active flexible wing wind-tunnel model
Boyd Perry, Vivek Mukhopadhyay, Sherwood T. Hoadley, Stanley R. Cole, Carey S. Buttrill
Abstract
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Boyd Perry, Vivek Mukhopadhyay, Sherwood T. Hoadley, Stanley R. Cole, Carey S. Buttrill
Abstract
Open-access reader
Active flutter suppression control laws were designed, implemented, and tested on an aeroelastically-scaled wind tunnel model in the NASA Langley Transonic Dynamics Tunnel. One of the control laws was successful in stabilizing the model while the dynamic pressure was increased to 24 percent greater than the measured open-loop flutter boundary. Other accomplishments included the design, implementation, and successful operation of a one-of-a-kind digital controller, the design and use of two simulation methods to support the project, and the development and successful use of a methodology for on-line controller performance evaluation.
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Active flutter suppression control laws were designed, implemented, and tested on an aeroelastically-scaled wind tunnel model in the NASA Langley Transonic Dynamics Tunnel. One of the control laws was successful in stabilizing the model while the dynamic pressure was increased to 24 percent greater than the measured open-loop flutter boundary. Other accomplishments included the design, implementation, and successful operation of a one-of-a-kind digital controller, the design and use of two simulation methods to support the project, and the development and successful use of a methodology for on-line controller performance evaluation.
Key concepts: Flutter, Wing, Wind tunnel, Aerodynamics, Aerospace engineering, Structural engineering, Marine engineering, Engineering