arXiv:2010.14018 [math.OC]AbstractReferencesReviewsResources
On analytic interpolation with non-classical constraints for solving problems in robust control
Axel Ringh, Johan Karlsson, Anders Lindquist
Published 2020-10-27Version 1
In this work we consider robust stabilization of uncertain dynamical systems and show that this can be achieved by solving a non-classically constrained analytic interpolation problem. In particular, this non-classical constraint confines the range of the interpolant, when evaluated on the imaginary axis, to a frequency-dependent set. By considering a sufficient condition for when this interpolation problem has a solution, we derive an approximate solution algorithm that can also be used for controller synthesis. Finally, the theory is illustrated on a numerical example with a plant with uncertain gain, phase, and output delay.
Comments: 8 pages, 2 figures
Related articles: Most relevant | Search more
arXiv:2109.01428 [math.OC] (Published 2021-09-03)
Application of robust control for CSR formalization and stakeholders interest
arXiv:1707.04791 [math.OC] (Published 2017-07-15)
Non-Asymptotic Analysis of Robust Control from Coarse-Grained Identification
arXiv:2211.08083 [math.OC] (Published 2022-11-15)
Robust control of systems with hyperbolic partial differential equations