DocumentCode :
3593402
Title :
Discrete Observer Design for Systems with Unknown Exogenous Inputs
Author :
Gleason, Daniel ; Andrisani, Dominick
Author_Institution :
Major, USAF, Air Force Institute of Technology, Wright-Patterson AFB, OH 45433
fYear :
1989
Firstpage :
1269
Lastpage :
1273
Abstract :
A design procedure is developed for determining optimal discrete observers for estimating system states and unknown exogenous system inputs. This procedure is based on augmenting a standard system observer with an input model. The augmented model is then transformed into the discrete z-domain to determine relevant input/output transfer function matrices. The transfer functions matrices are used to develop transfer function relationships between unknown exogenous inputs and the observer estimate of these inputs. Then it is shown that the optimal observer gains can be determined by implementing the observer as a Fisher filter. An example of the procedure is demonstrated with a third order point-mass tracking filter.
Keywords :
Actuators; Control systems; Degradation; Equations; Filters; Frequency domain analysis; Hydrogen; Observers; State estimation; Transfer functions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1989
Type :
conf
Filename :
4790383
Link To Document :
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