DocumentCode
404088
Title
An information theoretic approach to the modal estimation of switching FIR linear systems
Author
Martins, Nuno C. ; Dahleh, Munther A.
Author_Institution
LIDS Dept. of Electr. Eng. Comput. Sci., Massachusetts Inst. of Technol., USA
Volume
4
fYear
2003
fDate
9-12 Dec. 2003
Firstpage
4152
Abstract
In this paper we tackle the problem of mode estimation in switching systems. From the theoretical point of view, our contribution is twofold: creating a framework that has a clear parallel with a communication paradigm and deriving an analysis of performance. In particular, our work is restricted to the class of systems that randomly switch among a finite alphabet of discrete-time finite impulse response linear operators, therein designated as modes. In our approach, the switching system is viewed as an encoder of the mode, which is interpreted as the message, while a probing signal establishes a random code. Accordingly, the estimator, which knows the code and uses noisy measurements of the output, is constructed as a decoder whose properties can be studied by means of a modification of Shannon´s theory. Using a distance function, we define an uncertainty ball where the estimates are guaranteed to lie with probability arbitrarily close to 1. The radius of the uncertainty ball is directly related to the entropy rate of the switching process. It is shown that lower rates lead to smaller uncertainty. Such distance also reflects the informativity of the probing signal (code) and as such can be used as a guide on its choice. The estimator/decoder can be implemented using a low complexity algorithm.
Keywords
codecs; discrete time systems; encoding; entropy; linear systems; transient response; Shannons theory; discrete time finite impulse response linear operators; distance function; encoder; entropy rate; estimator/decoder; finite impulse response; information theory; low complexity algorithm; modal estimation; probability; probing signal; switching FIR linear systems; uncertainty ball; Communication switching; Decoding; Entropy; Finite impulse response filter; Linear systems; Performance analysis; State estimation; Switches; Switching systems; Uncertainty;
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.2003.1271800
Filename
1271800
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