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Comparison of Five System Identification Algorithms for Rotorcraft Higher Harmonic ControlThis report presents an analysis and performance comparison of five system identification algorithms. The methods are presented in the context of identifying a frequency-domain transfer matrix for the higher harmonic control (HHC) of helicopter vibration. The five system identification algorithms include three previously proposed methods: (1) the weighted-least- squares-error approach (in moving-block format), (2) the Kalman filter method, and (3) the least-mean-squares (LMS) filter method. In addition there are two new ones: (4) a generalized Kalman filter method and (5) a generalized LMS filter method. The generalized Kalman filter method and the generalized LMS filter method were derived as extensions of the classic methods to permit identification by using more than one measurement per identification cycle. Simulation results are presented for conditions ranging from the ideal case of a stationary transfer matrix and no measurement noise to the more complex cases involving both measurement noise and transfer-matrix variation. Both open-loop identification and closed- loop identification were simulated. Closed-loop mode identification was more challenging than open-loop identification because of the decreasing signal-to-noise ratio as the vibration became reduced. The closed-loop simulation considered both local-model identification, with measured vibration feedback and global-model identification with feedback of the identified uncontrolled vibration. The algorithms were evaluated in terms of their accuracy, stability, convergence properties, computation speeds, and relative ease of implementation.
Document ID
19980210017
Acquisition Source
Ames Research Center
Document Type
Technical Publication (TP)
Authors
Jacklin, Stephen A.
(NASA Ames Research Center Moffett Field, CA United States)
Date Acquired
September 6, 2013
Publication Date
May 1, 1998
Subject Category
Cybernetics
Report/Patent Number
NASA/TP-1998-207687
A-977183
NAS 1.60:207687
Report Number: NASA/TP-1998-207687
Report Number: A-977183
Report Number: NAS 1.60:207687
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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