Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/8855
Title: Decentralised PI controller design based on dynamic interaction decoupling in the closed-loop behaviour of a flotation process
Authors: Tshemese-Mvandaba, N. 
Tzoneva, Raynitchka 
Mnguni, Mkhululi Elvis Siyanda 
Keywords: Closed-loop performance;Column flotation process;modelling;Controller design;Model decoupling;Multivariable systems;Pole placement
Issue Date: 2021
Publisher: Hindawi
Source: Tshemese-Mvandaba, N., Tzoneva, R. & Mnguni, M.E.S. 2021. Decentralised PI controller design based on dynamic interaction decoupling in the closed-loop behaviour of a flotation process. International Journal of Electrical and Computer Engineering (IJECE), 11(6): 4865-4880. [https://doi.org/10.11591/ijece.v11i6.pp4865-4880]
Journal: International Journal of Electrical and Computer Engineering (IJECE) 
Abstract: An enhanced method for design of decenralised proportional integral (PI) controllers to control various variables of flotation columns is proposed. These columns are multivariable processes characterised by multiple interacting manipulated and controlled variables. The control of more than one variable is not an easy problem to solve as a change in a specific manipulated variable affects more than one controlled variable. Paper proposes an improved method for design of decentralized PI controllers through the introduction of decoupling of the interconnected model of the process. Decoupling the system model has proven to be an effective strategy to reduce the influence of the interactions in the closed-loop control and consistently to keep the system stable. The mathematical derivations and the algorithm of the design procedure are described in detail. The behaviour and performance of the closed-loop systems without and with the application of the decoupling method was investigated and compared through simulations in MATLAB/Simulink. The results show that the decouplers - based closedloop system has better performance than the closed-loop system without decouplers. The highest improvement (2 to 50 times) is in the steady-state error and 1.2 to 7 times in the settling and rising time. Controllers can easily be implemented.
URI: http://hdl.handle.net/11189/8855
ISSN: 2088-8708
DOI: https://doi.org/10.11591/ijece.v11i6.pp4865-4880
Appears in Collections:Eng - Journal articles (DHET subsidised)

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