Induction Motor Speed Controller Interface Design Via Simulink External Mode
DOI:
https://doi.org/10.5281/zenodo.8077705Keywords:
Induction motor, Simulink, PI controlAbstract
The use of induction motors in industrial systems has been increasing rapidly in recent years. The main reasons for this it has low cost, does not require much maintenance, and has a robust structure. The scalar control method, which has a low system cost due to the need for a single sensor (speed sensor), is preferred for speed control of induction motor in this study. The speed of induction motor is realized with PI control method using TI Delfino F28335 processor and 3-phase inverter over Simulink external mode. Thanks to the designed control interface, it is possible to turn the system on and off, change the reference speed value, and observe the actual speed value numerically and graphically. In addition, the controller coefficients Kp and Ki values can be changed without reprogramming the processor.
References
Ilten E, Demirtas M. Fractional order super-twisting sliding mode observer for sensorless control of induction motor. COMPEL-The Int J Comput Math Electr Electron Eng 2019;38:878–92.
Ilten E. Conformable fractional order controller design and optimization for sensorless control of induction motor. COMPEL-The Int J Comput Math Electr Electron Eng 2022.
Ilten E. Conformable Fractional Order Controller Design and Implementation for Per-Phase Voltage Regulation of Three- Phase SEIG Under Unbalanced Load. Electr Power Components Syst 2022:1–13. https://doi.org/10.1080/15325008.2022.2139433.
Yan Z, Utkin V. Sliding mode observers for electric machines-an overview. IEEE 2002 28th Annu. Conf. Ind. Electron. Soc. IECON 02, vol. 3, IEEE; 2002, p. 1842–7.
Published
Issue
Section
License
Copyright (c) 2022 AINTELIA Science Notes Journal

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Authors submitting a manuscript retain copyright of their work upon acceptance for publication in Aintelia Science Notes Journal (ASNJ). By submitting, authors agree that:
- Copyright Retention: Copyright of the published article remains with the author(s). BAUDER Press is granted a non-exclusive license to publish, reproduce, distribute, and archive the work.
- Licensing: The article is published under CC BY-NC 4.0, allowing third parties to share and adapt the work for non-commercial purposes, provided appropriate credit is given to the author(s) and the journal.
- Author Rights: Authors are free to deposit, distribute, and reuse their article in any medium (repositories, theses, conferences, teaching materials) without restriction, provided the journal is cited as the original publication venue.