• DocumentCode
    1775516
  • Title

    Realization of adaptable PID controller within an industrial automated system

  • Author

    Abdel-geliel, M. ; Qaud, F. ; Ashour, H.A.

  • Author_Institution
    Electr. & Control Eng. Dept., Arab Acad. for Sci. Technol. & Maritime Transp., Alexandria, Egypt
  • fYear
    2014
  • fDate
    18-20 June 2014
  • Firstpage
    965
  • Lastpage
    970
  • Abstract
    This paper describes and implements an a real control technique using advanced automation technology. PID controller is one of the most controller used in industrial but it need to be adaptable in real situation in order to overcome the parameter variation and system disturbance. An adaptable PID controller based on analogical gate technique is implemented using an industrial Programmable Logic Controller (PLC) to control the temperature of a process by actuating of a three way valve. The valve distributes the hot and cooled air in order to adjust the temperature of a vessel. The system control hardware consists of first; PLC as a field controller with high sampling rates, second; Human Machine Interface (HMI) as a local operating and adjusting station, finally; SCADA software to adjust and supervise the overall system. The process parameter estimation, simulation results and practical results are obtained and compared for system validation. A comparison between conventional and the proposed adaptable one performance is introduced, showing merits and effectiveness of proposed algorithm.
  • Keywords
    SCADA systems; adaptive control; control engineering computing; industrial control; parameter estimation; production engineering computing; programmable controllers; temperature control; three-term control; user interfaces; valves; HMI; PLC; SCADA software; adaptable PID controller; advanced automation technology; analogical gate technique; control technique; cooled air; hot air; human machine interface; industrial automated system; industrial programmable logic controller; parameter variation; process parameter estimation; system disturbance; three way valve; vessel temperature; Automation; Logic gates; Mathematical model; Process control; Temperature control; Temperature measurement; Valves; HMI; PLC; adaptable PID; industrial automation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control & Automation (ICCA), 11th IEEE International Conference on
  • Conference_Location
    Taichung
  • Type

    conf

  • DOI
    10.1109/ICCA.2014.6871052
  • Filename
    6871052