Implementation and Analysis of PID Control System Visually GeoGebra-Based
Keywords:
PID, Geogebra, Control System, Visualization, Parameter TuningAbstract
PID (Proportional-Integral-Derivative) control systems are a control method that is widely used in various engineering applications because of its ability to maintain stability and improve system performance. However, understanding the working mechanism of PID is often challenging, especially for learners or users without a strong control background. This study aims to implement and visually analyze the PID control system using GeoGebra software. Through interactive modeling, each controlling component (proportional, integral, and derivative) is visualized separately to show the influence of each on the system's response. In addition, the GeoGebra construction protocol is leveraged to construct dynamic simulations that allow users to adjust PID parameters directly. The results of the study show that GeoGebra is effectively used as a learning and exploration medium for the concept of the PID control system, as well as facilitating the process of visually tuning parameters. Thus, this approach can be an intuitive educational alternative to understanding and analyzing the PID control system.
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