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Flight control synthesis for flexible aircraft using Eigenspace assignmentThe use of eigenspace assignment techniques to synthesize flight control systems for flexible aircraft is explored. Eigenspace assignment techniques are used to achieve a specified desired eigenspace, chosen to yield desirable system impulse residue magnitudes for selected system responses. Two of these are investigated. The first directly determines constant measurement feedback gains that will yield a close-loop system eigenspace close to a desired eigenspace. The second technique selects quadratic weighting matrices in a linear quadratic control synthesis that will asymptotically yield the close-loop achievable eigenspace. Finally, the possibility of using either of these techniques with state estimation is explored. Application of the methods to synthesize integrated flight-control and structural-mode-control laws for a large flexible aircraft is demonstrated and results discussed. Eigenspace selection criteria based on design goals are discussed, and for the study case it would appear that a desirable eigenspace can be obtained. In addition, the importance of state-space selection is noted along with problems with reduced-order measurement feedback. Since the full-state control laws may be implemented with dynamic compensation (state estimation), the use of reduced-order measurement feedback is less desirable. This is especially true since no change in the transient response from the pilot's input results if state estimation is used appropriately. The potential is also noted for high actuator bandwidth requirements if the linear quadratic synthesis approach is utilized. Even with the actuator pole location selected, a problem with unmodeled modes is noted due to high bandwidth. Some suggestions for future research include investigating how to choose an eigenspace that will achieve certain desired dynamics and stability robustness, determining how the choice of measurements effects synthesis results, and exploring how the phase relationships between desired eigenvector elements effects the synthesis results.
Document ID
19860022118
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Davidson, J. B.
(Purdue Univ. West Lafayette, IN, United States)
Schmidt, D. K.
(Purdue Univ. West Lafayette, IN, United States)
Date Acquired
September 5, 2013
Publication Date
June 1, 1986
Subject Category
Aircraft Stability And Control
Report/Patent Number
NASA-CR-178164
NAS 1.26:178164
Report Number: NASA-CR-178164
Report Number: NAS 1.26:178164
Accession Number
86N31590
Funding Number(s)
PROJECT: RTOP 505-66-01-01
CONTRACT_GRANT: NAG1-254
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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