DocumentCode :
3693190
Title :
Adaptive regulation in the presence of persistent disturbances for linear infinite-dimensional systems in Hilbert space: Conditions for almost strict dissipativity
Author :
Mark J. Balas;Susan A. Frost
Author_Institution :
Embry-Riddle Aeronautical University, Daytona Beach, FL 32119 USA
fYear :
2015
fDate :
7/1/2015 12:00:00 AM
Firstpage :
860
Lastpage :
866
Abstract :
This paper is focused on adaptively controlling a linear infinite-dimensional system to cause it to regulate the output to zero in the presence of persistent disturbances. The plant (A, B, C) is described by a closed, densely defined linear operator A that generates a continuous semigroup of bounded operators on a Hilbert space of states; the input-output operators B & C are finite rank linear operators. We show that there exists a direct model reference adaptive control law that regulates the output in the presence of disturbances of known waveform but unknown amplitude and phase. The conditions needed for the success of the direct adaptive controller include the need for (A, B, C) to be almost strictly dissipative (ASD). In finite dimensional space, ASD is equivalent to two simple open-loop requirements: the high frequency gain CB is sign-definite and the open-loop transfer function P(s) is minimum phase. Our main result will prove infinite-dimensional versions of these conditions for a large class of infinite-dimensional systems.
Keywords :
"Hilbert space","Adaptive control","Trajectory","Filtering theory","Stability analysis","Thermal stability"
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 2015 European
Type :
conf
DOI :
10.1109/ECC.2015.7330650
Filename :
7330650
Link To Document :
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