PID Controller from the Theory Study to the Practical Application by Using Programmable Logical Controller


Abstract in English

This paper presents one of the most accurate, stable and fast to response advanced control system (PROPORTIONAL INTEGRAL DIFFERENTIAL CONTROL SYSTEM), which considered one of the special cases of closed loop control systems. Also, display and compare different forms of control and response of sub modes of PID controller, through using programmable logical controller and programmed it to be (PID) controller, and take advantage of this system for accurate control of the three phase motor speed. In addition, the PLC program is been connected to monitoring and collecting data software, known by acronym (SCADA) for calibration of (PID) and use this software to display the result of the responses for the different types of the controller PID in the form of graphic curves. These response curves show accuracy and fast to response that make this application an integrated system that could be form the infrastructure of many practical applications like large cranes, overlapping product lines and different other applications and the use of PLC systems make them high quality and high reliability systems.

References used

YUAN, X; JIANPING, Y; LIJUN, E. Research and Design on Electric Control System of Elevator Tower for Safety Devices. China Special Equipment Inspection and Research Institute, Beijing, China VOL. 421, 2013, 601-614
GABASOV, R; KIRILLOVA, M. F; BALASHEVICH, V. N. OPEN-LOOP AND CLOSED-LOOP OPTIMIZATION OF LINEAR CONTROL SYSTEMS. Asian Journal of Control Minsk, Belarus. Vol. 2, No. 3, September 2000, 155-168
SHAW, A. J. The PID Control Algorithm How it works, how to tune it, and how to use it. 2nd. Ed, Process Control Solutions, North Carolina, U. S. A, 2003, 514

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