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NASA NTRS · 19890065271

A multiloop, digital flutter suppression control law synthesis case study

Abstract

A methodology for obtaining a digital low-order, multiloop, robust control law for aeroelastic application from a full-state Linear Quadratic Gaussian design is presented. As part of the design methodology, the multivariable system robustness at the plant input and output is evaluated using singular value properties and improved using constrained optimization procedures. To validate the methodology, a digital flutter suppression system has been designed for the full-span Active Flexible Wing (AFW) wind-tunnel model as part of a collaborative effort between the NASA Langley Research Center and Rockwell International. Preliminary results for a low-order discrete, symmetric flutter suppression system design that significantly improved the AFW model stability are provided and the experiences gained during the design process are discussed.

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Mukhopadhyay, Vivek, Perry, Boyd, III, Noll, Thomas E.. 1989-01-01. A multiloop, digital flutter suppression control law synthesis case study. https://ntrs.nasa.gov/citations/19890065271

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