Novel Modified Chernobyl Disaster Optimizer For Controlling

This article presents the modified Chornobyl disaster optimizer (CDO) method for DC motor control to find the optimal PID

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This article presents the modified Chernobyl disaster optimizer (CDO) method for DC motor control to find the optimal proportional integral derivative (PID) settings. DC motors are widely used machinery. DC motors are also simple to use. The detonation of the Chernobyl nuclear reactor core served as the inspiration for the idea and guiding principles of the CDO. CDO has limitations in the stability of exploration and exploitation areas. This research aims to obtain a new balance of exploration and exploitation. This study suggests incorporating the levy flight and chaotic algorithm (CA) techniques to enhance the CDO method. This study was conducted with the MATLAB/Simulink software. A comparative technique, which included the marine predator algorithm (MPA), golden jackal optimization (GJO), and CDO, was utilized to determine the performance of the MCDO method. According to the study’s findings, the MCDO method’s overshoot value outperformed all other approaches.

Cite As

Aribowo, Widi, and Hisham A. Shehadeh. “Novel Modified Chernobyl Disaster Optimizer for Controlling DC Motor.” Indonesian Journal of Electrical Engineering and Computer Science, vol. 35, no. 3, Institute of Advanced Engineering and Science, Sept. 2024, p. 1361, doi:10.11591/ijeecs.v35.i3.pp1361-1369.

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General Information

MATLAB Release Compatibility

  • Compatible with any release

Platform Compatibility

  • Windows
  • macOS
  • Linux
Version Published Release Notes Action
1.0.0