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Design and robust performance evaluation of a fractional order PID controller applied to a DC motor

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    90 Scopus citations

    Abstract

    This paper proposes a methodology for the quantitative robustness evaluation of PID controllers employed in a DC motor. The robustness analysis is performed employing a 23 U+00B3 factorial experimental design for a fractional order proportional integral and derivative controller U+0028 FOPID U+0029, integer order proportional integral and derivative controller U+0028 IOPID U+0029 and the Skogestad internal model control controller U+0028 SIMC U+0029. The factors assumed in experiment are the presence of random noise, external disturbances in the system input and variable load. As output variables, the experimental design employs the system step response and the controller action. Practical implementation of FOPID and IOPID controllers uses the MATLAB stateflow toolbox and a NI data acquisition system. Results of the robustness analysis show that the FOPID controller has a better performance and robust stability against the experiment factors.

    Original languageEnglish
    Article number7894139
    Pages (from-to)304-314
    Number of pages11
    JournalIEEE/CAA Journal of Automatica Sinica
    Volume4
    Issue number2
    DOIs
    StatePublished - Apr 2017

    Bibliographical note

    Publisher Copyright:
    © 2017 Chinese Association of Automation.

    Keywords

    • Factorial experimental design
    • SIMC PID controller
    • fractional-order PID controller
    • robustness analysis

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