Title
Robust deadbeat continuous-time observer design based on modulation integrals
Abstract
In this paper, the state estimation problem of linear continuous-time systems is dealt with by a non-asymptotic state observer, which allows the state estimation error to decay within an arbitrarily-small finite time without resorting to high-gain injection. By processing the measured input and output signals through modulation integrals, a number of auxiliary signals not affected by the initial conditions are obtained, from which the system state can be computed by simple algebra. The problem of internal instability of modulation integrals is addressed by resorting to a periodic rescaling mechanism that prevents error accumulation and singularities. We show that the combination of modulation integrals with periodic rescaling can be implemented as a jump-linear system. The robustness of the devised method with respect to additive measurement perturbations on the system’s input/output is characterized by Input-to-State Stability arguments.
Year
DOI
Venue
2019
10.1016/j.automatica.2019.04.048
Automatica
Field
DocType
Volume
State observer,Control theory,Instability,Robustness (computer science),Input/output,Modulation,Gravitational singularity,Observer (quantum physics),Periodic graph (geometry),Mathematics
Journal
107
Issue
ISSN
Citations 
1
0005-1098
2
PageRank 
References 
Authors
0.46
0
3
Name
Order
Citations
PageRank
Gilberto Pin113617.21
Boli Chen2316.94
T Parisini3935113.17