Funnel Control With Saturation: Linear MIMO Systems

Tracking-by the system output-of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear m -input, m -output systems subject to input saturation. The system is assumed to have strict relative degree one with stable zero dynamics. Prespecified i...

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Published inIEEE transactions on automatic control Vol. 55; no. 2; pp. 532 - 538
Main Authors Hopfe, N., Ilchmann, A., Ryan, E.P.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.02.2010
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN0018-9286
1558-2523
DOI10.1109/TAC.2009.2037475

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Abstract Tracking-by the system output-of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear m -input, m -output systems subject to input saturation. The system is assumed to have strict relative degree one with stable zero dynamics. Prespecified is a performance funnel, within which the tracking error is required to evolve: transient and asymptotic behavior of the tracking error is influenced through choice of parameter values which define the funnel. The control structure is a saturating error feedback with a gain function designed to evolve so as to preclude contact with the funnel boundary. A feasibility condition (formulated in terms of the system data, the saturation bounds, the funnel data, bounds on the reference signal, and the initial state) is presented under which the tracking objective is achieved, whilst maintaining boundedness of all signals.
AbstractList Tracking-by the system output-of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear m-input, m-output systems subject to input saturation. The system is assumed to have strict relative degree one with stable zero dynamics. Prespecified is a performance funnel, within which the tracking error is required to evolve: transient and asymptotic behavior of the tracking error is influenced through choice of parameter values which define the funnel. The control structure is a saturating error feedback with a gain function designed to evolve so as to preclude contact with the funnel boundary. A feasibility condition (formulated in terms of the system data, the saturation bounds, the funnel data, bounds on the reference signal, and the initial state) is presented under which the tracking objective is achieved, whilst maintaining boundedness of all signals.
Tracking--by the system output--of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear [Formula Omitted]-input, [Formula Omitted]-output systems subject to input saturation. The system is assumed to have strict relative degree one with stable zero dynamics. Prespecified is a performance funnel, within which the tracking error is required to evolve: transient and asymptotic behavior of the tracking error is influenced through choice of parameter values which define the funnel. The control structure is a saturating error feedback with a gain function designed to evolve so as to preclude contact with the funnel boundary. A feasibility condition (formulated in terms of the system data, the saturation bounds, the funnel data, bounds on the reference signal, and the initial state) is presented under which the tracking objective is achieved, whilst maintaining boundedness of all signals.
Author Hopfe, N.
Ryan, E.P.
Ilchmann, A.
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10.1109/9.62269
10.1109/CDC.1984.272346
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Issue 2
Keywords MIMO system
Transient response
Zero of function
transient behavior
Tracking
Asymptotic behavior
Feedback regulation
Control synthesis
Input saturation
Output signal
linear systems
Linear control
Derivative
Tracking error
Feasibility
Transfer function
Output feedback
Payoff function
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References ref7
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sparrow (ref9) 1982
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Snippet Tracking-by the system output-of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear m -input, m...
Tracking--by the system output--of a reference signal (assumed bounded with essentially bounded derivative) is considered in the context of linear [Formula...
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StartPage 532
SubjectTerms Adaptive control
Applied sciences
Asymptotic properties
Computer science; control theory; systems
Control system analysis
Control system synthesis
Control systems
Control theory. Systems
Differential equations
Dynamical systems
Dynamics
Error correction
Exact sciences and technology
Fault location
Funnels
Input saturation
Linear systems
MIMO
Output feedback
Programmable control
Prototypes
Reference signals
Saturation
Tracking
Tracking errors
transient behavior
Title Funnel Control With Saturation: Linear MIMO Systems
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