Publication
Unknown Input Observer design for LPV OSL-QIB nonlinear systems
Journal Article (2025)
Journal
IFAC-PapersOnLine
Pages
103-108
Volume
59
Number
15
Doc link
https://doi.org/10.1016/j.ifacol.2025.10.065
File
Authors
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Arango, Juan Pablo
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Duviella, Eric
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Etienne, Lucien
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Langueh, Kokou
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Segovia Castillo, Pau
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Puig Cayuela, Vicenç
Abstract
This paper presents the design of an unknown input observer (UIO) for linear parameter-varying (LPV) one-sided Lipschitz quadratically inner-bounded (OSL-QIB) systems. This family of systems extends conventional LPV systems by adding nonlinear terms to improve observer performance and reduce errors due to the transformation of a nonlinear system to its LPV version (either because the nonlinearities are difficult to wrap as it is in the polytopic case, or because the Jacobian does not yield a good approximation). The UIO is initially designed in the absence of noise, allowing to establish LMI conditions to guarantee the convergence of the error dynamics, and then sensor noise is explicitly considered in the design so that its effiect can be mitigated. Finally, a case study based on the Corning channel benchmark is used to test the performance of the UIO in the presence of unknown inputs (e.g., leakage, evaporation or rain).
Categories
control theory.
Author keywords
LPV; OSL-QIB; Unknown Input Observer; OCIS; Material and energy balances; fluid mechanics
Scientific reference
J.P. Arango, E. Duviella, L. Etienne, K. Langueh, P. Segovia and V. Puig. Unknown Input Observer design for LPV OSL-QIB nonlinear systems. IFAC-PapersOnLine, 59(15): 103-108, 2025.

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