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Magnetic suspension characteristics of electromagnetic actuatorsElectromagnetic actuators that use a current-carrying coil (which is placed in a magnetic field) to generate mechanical force are conceptually attractive components for active control of rotating shafts. In one concept that is being tested in the laboratory, the control forces from such actuators are applied on the flexibly supported bearing housings of the rotor. Development of this concept into a practical reality requires a clear and thorough understanding of the role of electromechanical parameters of these actuators in delivering the right amount of control force at the right phase into the rotor. The electromechanical parameters of the actuators investigated are the mass of the armature, stiffness of its suspension, electrical resistance, and inductance of the coils. Improper selection of these parameters can result in degradation in their performance, leading to mistuning between the actuator and the rotor. Through a simple analysis, it is shown that use of such mistuned actuators could result in sharp fluctuations in the phase of the control force delivered into the rotor around the critical speeds. These sharp fluctuations in phase, called 'Phase Glitches', are undesirable. Hence, future designs of controllers should take into account the undesirable mistuning effects between the actuator and the rotor caused by the phase glitches.
Document ID
19930018372
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Rao, Dantam K.
(Mechanical Technology, Inc. Latham, NY, United States)
Dill, J.
(Mechanical Technology, Inc. Latham, NY, United States)
Zorzi, E.
(Mechanical Technology, Inc. Latham, NY, United States)
Date Acquired
September 6, 2013
Publication Date
January 1, 1993
Publication Information
Publication: NASA. Langley Research Center, Magnetic Suspension Technology Workshop
Subject Category
Mechanical Engineering
Accession Number
93N27561
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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