On Functional Observability of Nonlinear Systems and the Design of Functional Observers with Assignable Error Dynamics
Costas Kravaris

TL;DR
This paper introduces a new method for designing functional observers for nonlinear systems that ensures linear error dynamics with assignable poles, supported by theoretical conditions and practical chemical reactor examples.
Contribution
It presents a novel approach for designing functional observers with linear error dynamics and assignable poles, including conditions for functional observability and a new observer index concept.
Findings
Derived sufficient conditions for functional observability
Designed functional observers with linear error dynamics
Validated approach with chemical reactor case studies
Abstract
This paper proposes a novel approach for designing functional observers for nonlinear systems, with linear error dynamics and assignable poles. Sufficient conditions for functional observability are first derived, leading to functional relationships between the Lie derivatives of the output to be estimated and the ones of the measured output. These are directly used in the proposed design of the functional observer. The functional observer is defined in differential input-output form, satisfying an appropriate invariance condition that emerges from the state-space invariance conditions of the literature. A concept of functional observer index is also proposed, to characterize the lowest feasible order of functional observer with pole assignment. Two chemical reactor applications are used to illustrate the proposed approach.
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Taxonomy
TopicsAdaptive Control of Nonlinear Systems · Extremum Seeking Control Systems · Advanced Control Systems Optimization
