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Observer design methodology for stochastic and deterministic robustness

Authors
Jung, JongchulHuh, KunsooLee, Tae Hee
Issue Date
Jul-2008
Publisher
TAYLOR & FRANCIS LTD
Citation
INTERNATIONAL JOURNAL OF CONTROL, v.81, no.7, pp.1172 - 1182
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF CONTROL
Volume
81
Number
7
Start Page
1172
End Page
1182
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/178163
DOI
10.1080/00207170701710974
ISSN
0020-7179
Abstract
A unified observer with stochastic and deterministic robustness is developed in this paper so that an observer is less sensitive to both stochastic and deterministic uncertainties. For stochastic robustness, the norm of the observer gain and the lower bound of the observer decay rate are shown to be design factors which can minimize the upper bound of the estimation error variance. For deterministic robustness, the L-2 norm-based condition number of the observer eigenvector matrix is utilized to address robust estimation performance against deterministic uncertainties. In order to justify the proposed method, a graphical approach is first introduced, and then a multi-objective optimization problem including linear matrix inequality constraints is formulated to provide the unified robustness.
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