Luis de la Torre, Hector Vargas Oyarzun, and Jacobo Saenz
The Servo Heat-Flow System Control Model simulates the use of a proportional-integral-derivative (PID) controller to control of the temperature in three different positions along a heat-flow system. The simulation allows closing the control loop around three different points inside the heat-flow system using three sensors positioned at the beginning, in the middle and at the end of the tube. The heat-flow is modeled as a second order system with delays
This EJS simulation is based on a real system running at the Spanish Open University for Distance Education (UNED). The real heat-flow system is used as a remote laboratory for learning purposes and a different application created with EJS (visually identical to this simulation) serves as graphical user interface to operate the remote laboratory.
Please note that this resource requires
at least version 1.6 of Java (JRE).
Heat-Flow System Control Source Code
The source code zip archive contains an XML representation of the Heat-Flow System Control Model. Unzip this archive in your EjsS 5 workspace to compile and run this model using EjsS 5 or above. download 40kb .zip
Last Modified: April 3, 2014
de la Torre, L., Oyarzun, H., & Saenz, J. (2014). Heat-Flow System Control Model [Computer software]. Retrieved July 6, 2022, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13231&DocID=3767
de la Torre, Luis, Hector Vargas Oyarzun, and Jacobo Saenz. Heat-Flow System Control Model. Computer software. 2014. Java (JRE) 1.6. 6 July 2022 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13231&DocID=3767>.
%A Luis de la Torre %A Hector Vargas Oyarzun %A Jacobo Saenz %T Heat-Flow System Control Model %D 2014 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13231&DocID=3767 %O application/java
%0 Computer Program %A de la Torre, Luis %A Oyarzun, Hector Vargas %A Saenz, Jacobo %D 2014 %T Heat-Flow System Control Model %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13231&DocID=3767
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