Controller design for microgravity vibration isolation systemsControl aspects of the vibration isolation problem of manned orbiters are investigated, and a viable robust control is proposed. The application of modern control theory to this problem, incorporating frequency-weighting and disturbance accommodation techniques, is investigated. The resulting controller achieves excellent performance for plants within a reasonable range of variations from the nominal. Robust stability and performance guarantees are measured by singular value and structured singular value checks, yielding guarantees on allowable real plant parameter uncertainties and on acceptable controller and sensor phase and gain variations. The problem of unmodeled HG modes is eliminated by using frequency weighting to reduce controller bandwidth. The method is applied successfully to the single-degree-of-freedom isolation problem.
Document ID
19920074703
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Hampton, R. D. (NASA Lewis Research Center Cleveland, OH, United States)
Knospe, C. R. (Virginia, University Charlottesville, United States)
Grodsinsky, C. M. (NASA Lewis Research Center Cleveland, OH, United States)