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Linearizing controller for higher-degree nonlinear processes with compensation for modeling inaccuracies: Practical validation and future developments

  • Silesian University of Technology
  • Bournemouth University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Citations (Scopus)

Abstract

This work shows the results of the practical implementation of the linearizing controller for the example laboratory pneumatic process of the third relative degree. Controller design is based on the Lie algebra framework but in contrast to the previous attempts, the on-line model update method is suggested to ensure offset-free control. The paper details the proposed concept and reports the experiences from the practical implementation of the suggested controller. The superiority of the proposed approach over the conventional PI controller is demonstrated by experimental results. Based on the experiences and the validation results, the possibilities of the potential application of the data-driven soft sensors for further improvement of the control performance are discussed.

Original languageEnglish
Title of host publicationICINCO 2014 - Proceedings of the 11th International Conference on Informatics in Control, Automation and Robotics
EditorsJoaquim Filipe, Joaquim Filipe, Oleg Gusikhin, Kurosh Madani, Jurek Sasiadek
PublisherSciTePress
Pages691-698
Number of pages8
ISBN (Electronic)9789897580390
DOIs
Publication statusPublished - 2014
Event11th International Conference on Informatics in Control, Automation and Robotics, ICINCO 2014 - Vienna, Austria
Duration: 1 Sept 20143 Sept 2014

Publication series

NameICINCO 2014 - Proceedings of the 11th International Conference on Informatics in Control, Automation and Robotics
Volume1

Conference

Conference11th International Conference on Informatics in Control, Automation and Robotics, ICINCO 2014
Country/TerritoryAustria
CityVienna
Period1/09/143/09/14

Keywords

  • Adaptive control
  • Linearizing control
  • Practical validation
  • Soft sensors

ASJC Scopus subject areas

  • Computer Vision and Pattern Recognition
  • Artificial Intelligence
  • Information Systems
  • Control and Systems Engineering

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