TR
EN
An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter
Abstract
This study presents an active disturbance rejection control (ADRC) technique for a boost converter system which is represented with a second - order transfer function. Then, linear active disturbance rejection control (LADRC) technique, wherein a linear extended state observer (LESO) is constructed to estimate both the total disturbance and the system state at the same time, has been applied to the converter. In this context, a pole placement design reduces the number of tuning parameters of LADRC to two to lessen the difficulty of parameter adjustment. The control scheme increases the tracking capability. A numerical example is provided to highlight the effectiveness of the control strategy. The tracking performance and step response are observed via several simulation studies using MATLAB/Simulink tool. It is demonstrated that the algorithm used in study is alternative way of tuning duty cycle of the boost converter instead of PID control technique. The performance of the controller is evaluated with a number of performance metrics. The tabulated results validate the controller's efficacy.
Keywords
References
- Chang, X., Li, Y., Zhang, W., Wang, N., & Xue, W. (2015). Active Disturbance Rejection Control for a Flywheel Energy Storage System. IEEE Transactions on Industrial Electronics,62(912),991–1001.
- Criens, C. H. A., Willems, F. P. T., Van Keulen, T. A. C., & Steinbuch, M. (2015). Disturbance rejection in diesel engines for low emissions and high fuel efficiency. IEEE Transactions on Control Systems Technology, 23(2), 662–669.
- Eker, D. & Özbek, N. S. (2021). An Assessment of Active Disturbance Rejection Technique From a Theoretical Perspective. Avrupa Bilim ve Teknoloji Dergisi, Ejosat Özel Sayı 2021 (ISMSIT), 284-291.
- Gao, Z. (2003). Scaling and Bandwidth-Parameterization based Controller Tuning. Proceedings of the American Control Conference, 6, 4989–4996.
- Han, J. (2009). From PID to active disturbance rejection control. IEEE Transactions on Industrial Electronics, 56(3), 900–906.
- Herbst, G. (2013). A Simulative Study on Active Disturbance Rejection Control (ADRC) as a Control Tool for Practitioners. Electronics, 2(4), 246–279.
- Liu, S., You, H., Li, J., Kai, S., & Yang, L. (2021). Active disturbance rejection control based distributed secondary control for a low-voltage DC microgrid. Sustainable Energy, Grids and Networks, 27, 100515.
- Oucheriah, S., & Guo, L. (2013). PWM-based adaptive sliding-mode control for boost DC-DC converters. IEEE Transactions on Industrial Electronics, 60(8), 3291–3294.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
July 15, 2022
Submission Date
June 27, 2022
Acceptance Date
July 1, 2022
Published in Issue
Year 2022 Number: 37
APA
Eker, D., Özbek, N. S., & Çelik, Ö. (2022). An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter. Avrupa Bilim Ve Teknoloji Dergisi, 37, 108-112. https://doi.org/10.31590/ejosat.1136558
AMA
1.Eker D, Özbek NS, Çelik Ö. An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter. EJOSAT. 2022;(37):108-112. doi:10.31590/ejosat.1136558
Chicago
Eker, Deha, Necdet Sinan Özbek, and Özgür Çelik. 2022. “An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter”. Avrupa Bilim Ve Teknoloji Dergisi, nos. 37: 108-12. https://doi.org/10.31590/ejosat.1136558.
EndNote
Eker D, Özbek NS, Çelik Ö (July 1, 2022) An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter. Avrupa Bilim ve Teknoloji Dergisi 37 108–112.
IEEE
[1]D. Eker, N. S. Özbek, and Ö. Çelik, “An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter”, EJOSAT, no. 37, pp. 108–112, July 2022, doi: 10.31590/ejosat.1136558.
ISNAD
Eker, Deha - Özbek, Necdet Sinan - Çelik, Özgür. “An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter”. Avrupa Bilim ve Teknoloji Dergisi. 37 (July 1, 2022): 108-112. https://doi.org/10.31590/ejosat.1136558.
JAMA
1.Eker D, Özbek NS, Çelik Ö. An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter. EJOSAT. 2022;:108–112.
MLA
Eker, Deha, et al. “An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter”. Avrupa Bilim Ve Teknoloji Dergisi, no. 37, July 2022, pp. 108-12, doi:10.31590/ejosat.1136558.
Vancouver
1.Deha Eker, Necdet Sinan Özbek, Özgür Çelik. An Alternative Approach of Disturbance Rejection Control Methodology to DC-DC Boost Converter. EJOSAT. 2022 Jul. 1;(37):108-12. doi:10.31590/ejosat.1136558