Title :
Estimation of consistent parameter sets for continuous-time nonlinear systems using occupation measures and LMI relaxations
Author :
Streif, Stefan ; Rumschinski, Philipp ; Henrion, Didier ; Findeisen, Rolf
Author_Institution :
Lab. for Syst. Theor. & Autom. Control, Otto-von-Guericke-Univ. Magdeburg, Magdeburg, Germany
Abstract :
Obtaining initial conditions and parameterizations leading to a model consistent with available measurements or safety specifications is important for many applications. Examples include model (in-)validation, prediction, fault diagnosis, and controller design. We present an approach to determine inner- and outer-approximations of the set containing all consistent initial conditions/parameterizations for nonlinear (polynomial) continuous-time systems. These approximations are found by occupation measures that encode the system dynamics and measurements, and give rise to an infinite-dimensional linear program. We exploit the flexibility and linearity of the decision problem to incorporate unknown-but-bounded and pointwise-in-time state and output constraints, a feature which was not addressed in previous works. The infinite-dimensional linear program is relaxed by a hierarchy of LMI problems that provide certificates in case no consistent initial condition/parameterization exists. Furthermore, the applied LMI relaxation guarantees that the approximations converge (almost uniformly) to the true consistent set. We illustrate the approach with a biochemical reaction network involving unknown initial conditions and parameters.
Keywords :
biochemistry; continuous time systems; linear matrix inequalities; linear programming; multidimensional systems; nonlinear systems; parameter estimation; LMI problems; LMI relaxation; biochemical reaction network; consistent parameter set estimation; continuous-time nonlinear systems; infinite-dimensional linear program; initial conditions-parameterizations; inner-approximation; occupation measures; outer-approximations; output constraints; pointwise-in-time state constraint; system dynamics; system measurements; unknown-but-bounded constraint; Approximation methods; Parameter estimation; Polynomials; Time measurement; Trajectory; Vectors;
Conference_Titel :
Decision and Control (CDC), 2013 IEEE 52nd Annual Conference on
Conference_Location :
Firenze
Print_ISBN :
978-1-4673-5714-2
DOI :
10.1109/CDC.2013.6760898