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Title: | Simulation control of three-tank-system using 2DOF controller |
Author: | Kubalčík, Marek; Barot, Tomáš |
Document type: | Conference paper (English) |
Source document: | Lecture Notes in Mechanical Engineering. 2024, p. 146-156 |
ISSN: | 2195-4356 (Sherpa/RoMEO, JCR) |
ISBN: | 978-303161574-0 |
DOI: | https://doi.org/10.1007/978-3-031-61575-7_14 |
Abstract: | The paper proposes an implementation of a 2DOF controller based on polynomial methods for control of a system of three serially connected tanks. A state-space model of the three-tank-system was figured out according to physical laws. Then an appropriate linear input-output model was computed from the state-space model. This model is related to the prime model, although it has a different structure. It can therefore be assumed that it describes the main properties of the controlled system in the same way as the prime model. The input-output model was then applied for design of the 2DOF controller. The system of three interconnected tanks has a nonlinear character and uncertain parameters. A description of its dynamical properties with the use of a linear model is appropriate just in a vicinity of a certain working point. The controller was then realized in an adaptive version with a recursive identification of an input-output model appropriate to the state-space model which was realized in Simulink environment and used for verification of the controller by simulation. Simulation results are also included in the paper. |
Full text: | https://link.springer.com/chapter/10.1007/978-3-031-61575-7_14 |
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