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Controls design with crossfeeds for hovering rotorcraft using quantitative feedback theoryThis work is extending the research accomplished on project NCC2-751. A newly implemented helicopter model has been used to simulate 25 flight configurations near hover for the UH-60 RASCAL aircraft. A new engine model has been installed in the FORECAST simulation (alias UMGENHEL) for the better prediction of the yaw and heave responses. By applying the decoupling metric from project NCC 751 it was determined that the aileron to pitch and the elevator to yaw responses do not indicate the need for crossfeeds since both of them have a decoupling metric value over 20 dB (less than 10 percent coupling). In the case of the aileron to heave and the elevator to heave responses, the large size and the overlapping of the templates indicate that a low-order dynamic crossfeed cannot be found. The low-order dynamic crossfeed selection is proceeding, however, for the remaining eight crossfeeds. Note that most of them have successfully decoupled the system by 20 dB or more, except for the rudder to heave crossfeed (18.2 dB). It is probable that the engine model needs more accuracy to further improve the heave to yaw crossfeed decoupling metric value. To see how the new low-order dynamic crossfeeds perform, a simulation was accomplished using MATLAB SIMULINK.
Document ID
19940026698
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Biezad, Daniel J.
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Date Acquired
September 6, 2013
Publication Date
April 15, 1994
Subject Category
Aircraft Stability And Control
Report/Patent Number
NASA-CR-195765
NAS 1.26:195765
Report Number: NASA-CR-195765
Report Number: NAS 1.26:195765
Accession Number
94N31203
Funding Number(s)
CONTRACT_GRANT: NCC2-833
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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