DocumentCode
2153095
Title
A “Mixed” small gain and passivity theorem for an interconnection of linear time-invariant systems
Author
Griggs, Wynita M. ; Anderson, Brian D. O. ; Lanzon, Alexander
Author_Institution
Dept. of Inf. Eng., Australian Nat. Univ., Canberra, ACT, Australia
fYear
2007
fDate
2-5 July 2007
Firstpage
2410
Lastpage
2416
Abstract
We show that the negative feedback interconnection of two causal, stable, linear time-invariant systems with a “mixed” small gain and passivity frequency domain property is guaranteed to be finite-gain stable. This “mixed” small gain and passivity property refers to the characteristic that the frequency range -∞ <; ω <; ∞ can be divided into intervals for which the two systems in the interconnection are both: a) “input and output strictly passive” (and one or both of the systems may or may not have “gain less than one”); or b) “input and output strictly passive and with gain less than one”; or c) “with gain less than one” (and one or both of the systems may or may not be “input and output strictly passive”). The “mixed” small gain and passivity property is described mathematically using the notion of dissipativity of systems, and finite-gain stability of the interconnection is proven via a stability result for dissipative interconnected systems.
Keywords
feedback; interconnected systems; linear systems; stability; causal systems; dissipative interconnected systems; finite-gain stability; finite-gain stable; linear time-invariant systems; mixed small gain property; negative feedback interconnection; passivity frequency domain property; passivity property; passivity theorem; stable systems; system dissipativity; Australia; Feedback loop; Frequency conversion; Frequency-domain analysis; Stability criteria; Transfer functions; Dissipative systems; finite gain; linear systems; negative feedback stability; passivity;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (ECC), 2007 European
Conference_Location
Kos
Print_ISBN
978-3-9524173-8-6
Type
conf
Filename
7068244
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