![]() The results showed that performance of the PIDcontroller tuned with LAbVIEW auto-tuning method is better than others. The PIDparameters obtained with trial-error and two types auto-tuning methods were tested in the DC motorcontrol system and achieved results were compered. The DC motor speed control system was implemented in an interface designed on LaboratoryVirtual Instrument Electronic Workbench (LabVIEW) environment and CompactRIO unit. ![]() In this paper, theautomatic tuning method proposed by Aström and Hagglund was applied to a DC motor speed controlsystem. ![]() In order to overcome this problem related toPID parameter tuning many automatic tuning methods have been developed. These parameters tuningwith trial-error method leads to time and job loss, and the parameters determined in this way cannotprovide a sufficiently efficient operating characteristic. However, itcan difficult to set these controller parameters for the controlled platform. Although advanced controllers are used in control applications, proportional-integral-derivative (PID)controllers are preferred in industry due to their simple structure and ease of application.
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