DocumentCode
404490
Title
Infimum data rates for stabilising Markov jump linear systems
Author
Nair, G.N. ; Dey, S. ; Evans, R.J.
Author_Institution
Dept. of Electr. & Electron. Eng., Melbourne Univ., Vic., Australia
Volume
2
fYear
2003
fDate
9-12 Dec. 2003
Firstpage
1176
Abstract
In the past years, the problem of stabilising linear dynamical systems with low feedback data rates has been intensively investigated. A particular focus has been the characterisation of the infimum data rate for stabilisability, which specifies the smallest rate, in bits per unit time, at which information can circulate in a stable feedback loop. This paper extends this line of research to the case of fully-observed, finite-dimensional, linear systems without process noise but with control-independent, Markov parameters. Unlike previous formulations, the coding alphabet is permitted to be random and time-varying via a possible dependence on the observed Markov modes. Using quantisation techniques and real Jordan forms, it is shown that the smallest asymptotic mean data rate for stabilisability in r-th absolute output moment, over all coding and control schemes, is given by an exponent which measures the asymptotic mean growth rate of unstable eigenspace volumes. An explicit formula for it is obtained in the case of antistable dynamics. For scalar systems, this expression is quite different from an earlier one derived assuming a constant alphabet, in particular being independent of the moment order.
Keywords
Markov processes; linear systems; multidimensional systems; stability; Markov jump linear systems; infimum data rate; quantisation techniques; real Jordan forms; Australia; Communication system control; Control systems; Data engineering; Feedback loop; Large-scale systems; Linear systems; Microelectromechanical systems; Quantization; Stability;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 2003. Proceedings. 42nd IEEE Conference on
ISSN
0191-2216
Print_ISBN
0-7803-7924-1
Type
conf
DOI
10.1109/CDC.2003.1272767
Filename
1272767
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