Multiloop robust H∞ control design based on the dynamic PLS approach to chemical processes


Autoria(s): Zhang, Jianhua; Lin, Mingming; Chen, Junghui; Li, Kang; Xu, Jinliang
Data(s)

01/08/2015

Resumo

In this paper, a multiloop robust control strategy is proposed based on H∞ control and a partial least squares (PLS) model (H∞_PLS) for multivariable chemical processes. It is developed especially for multivariable systems in ill-conditioned plants and non-square systems. The advantage of PLS is to extract the strongest relationship between the input and the output variables in the reduced space of the latent variable model rather than in the original space of the highly dimensional variables. Without conventional decouplers, the dynamic PLS framework automatically decomposes the MIMO process into multiple single-loop systems in the PLS subspace so that the controller design can be simplified. Since plant/model mismatch is almost inevitable in practical applications, to enhance the robustness of this control system, the controllers based on the H∞ mixed sensitivity problem are designed in the PLS latent subspace. The feasibility and the effectiveness of the proposed approach are illustrated by the simulation results of a distillation column and a mixing tank process. Comparisons between H∞_PLS control and conventional individual control (either H∞ control or PLS control only) are also made

Identificador

http://pure.qub.ac.uk/portal/en/publications/multiloop-robust-h-control-design-based-on-the-dynamic-pls-approach-to-chemical-processes(adc44f93-6d1c-4177-843f-713934f9b2fa).html

http://dx.doi.org/10.1016/j.cherd.2015.03.021

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Zhang , J , Lin , M , Chen , J , Li , K & Xu , J 2015 , ' Multiloop robust H∞ control design based on the dynamic PLS approach to chemical processes ' Chemical Engineering Research and Design , vol 100 , pp. 518-529 . DOI: 10.1016/j.cherd.2015.03.021

Tipo

article