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Eigenvalue assignment strategies in rotor systemsThe work done to establish the control and direction of effective eigenvalue excursions of lightly damped, speed dependent rotor systems using passive control is discussed. Both second order and sixth order bi-axis, quasi-linear, speed dependent generic models were investigated. In every case a single, bi-directional control bearing was used in a passive feedback stabilization loop to resist modal destabilization above the rotor critical speed. Assuming incomplete state measurement, sub-optimal control strategies were used to define the preferred location of the control bearing, the most effective measurement locations, and the best set of control gains to extend the speed range of stable operation. Speed dependent control gains were found by Powell's method to maximize the minimum modal damping ratio for the speed dependent linear model. An increase of 300 percent in stable speed operation was obtained for the sixth order linear system using passive control. Simulations were run to examine the effectiveness of the linear control law on nonlinear rotor models with bearing deadband. The maximum level of control effort (force) required by the control bearing to stabilize the rotor at speeds above the critical was determined for the models with bearing deadband.
Document ID
19870002849
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Youngblood, J. N.
(Alabama Univ. University, AL, United States)
Welzyn, K. J.
(Alabama Univ. University, AL, United States)
Date Acquired
September 5, 2013
Publication Date
October 1, 1986
Subject Category
Numerical Analysis
Report/Patent Number
BER-389-177
NAS 1.26:179906
NASA-CR-179906
Report Number: BER-389-177
Report Number: NAS 1.26:179906
Report Number: NASA-CR-179906
Accession Number
87N12282
Funding Number(s)
CONTRACT_GRANT: NAG8-034
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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