Cardinality Constrained Robust Optimization Applied to a Class of Interval Observers

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Date

2014-07-21

Authors

McCarthy, Philip James
Nielsen, Christopher
Smith, Stephen L.

Advisor

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Volume Title

Publisher

IEEE

Abstract

We propose a linear programming-based method of interval observer design for systems with uncertain but bounded model parameters and initial conditions. We assume that each uncertain parameter in the system model is bounded by conservative guaranteed bounds, and tighter conditional bounds. We define a class of systems by the number of conservative bounds required to bound all uncertain parameters. Using robust optimization, we solve a single linear program per class of systems to obtain gains for the interval observer. A conservative upper bound on the worst-case steady-state performance of the interval observers over the specified class of systems is minimized.

Description

McCarthy, P. J., Nielsen, C., & Smith, S. L. (2014). Cardinality constrained robust optimization applied to a class of interval observers. 2014 American Control Conference, 5337–5342. https://doi.org/10.1109/ACC.2014.6859149

Keywords

Robustness, Gold, Observers, Uncertainty, Optimization, Upper bound, Vectors

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