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TR
Hybrid Control of DC - DC Buck Boost Converter
Öz
Optimization of control methods in accordance with their intended use in power electronics applications is a necessity. In this manuscript, a hybrid control approach for DC - DC buck-boost converters consisting of a PI controller and a fuzzy logic controller is presented. The mathematical model has been proposed by determining the parameters of the DC - DC buck-boost converter. PI controller, fuzzy logic controller and hybrid controller are designed and simulated in MATLAB Simulink program. Genetic algorithm is used to select the most suitable PI parameters. Experimental tests are performed to show efficiency of the hybrid method for both buck and boost mode.
Anahtar Kelimeler
Kaynakça
- [1] N. İsmail, N. Hashim and R. Baharom, “A Comparative study of proportional Integral Derivative Controller and Fuzzy Logic Controller on DC/DC Buck-Boost Converter”, IEEE Symposium on Industrial Electronics and Applications, pp. 148-154, 2011, doi:10.1109/ISIEA.2011.6108687.
- [2] P. Mattevalli, L. Rossetto, G. Spiazzi and P. Tenti, “General-Purpose Fuzzy Controller for DC – DC Converters”, IEEE Transactıons on Power Electronics, vol.12, no. 1, pp. 79-86, 1997, doi:10.1109/63.554172
- [3] Z. B. Duranay and H. Guldemir, “Study of Fuzzy Logic Control of Dc - dc Buck Converter”, Turkish Journal of Science Technology, vol. 12(2), pp. 23-31, 2017.
- [4] J. A. Asumadu and E. Ho, “A Multivariable Fuzzy Logic Controller (MFLC) For A Buck DC - DC Converter”, IEEE Power Electronics Specialists Conference, pp. 3770-3774, 2004, doi:10.1109/PESC.2004.1355141
- [5] C. Elmas, O. Deperlioglu and H. H. Sayan, “Adaptive Fuzzy Logic Controller for DC–DC Converters”, Expert Systems with Applications, pp. 1540-1548, 2009 doi:10.1016/j.eswa.2007.11.029.
- [6] J. Corcau and T. L. Grigorie “About of PI fuzzy controller in DC to DC power converters”, WSEAS Int. Conf. On Artificial Intelligence, Knowledge Engineerind & Data Bases, pp. 208 – 211, 2009.
- [7] K. F. Hussein, I. Abdel-Qader and M. K. Hussain, “Hybrid Fuzzy PID Controller for Buck-Boost Converter in Solar Energy-Battery Systems”, IEEE International Conference on Electro/Information Technology, pp. 70- 75, 2015, doi: 10.1109/EIT.2015.7293323.
- [8] R. R. Neethu, N. A. Singh and Dr. Purushothaman, “Fuzzy Controllers for Boost DC - DC Converters”, IOSR Journal of Electronics and Communication Engineering, pp. 12-19, 2016.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Elektrik Mühendisliği
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
31 Temmuz 2021
Gönderilme Tarihi
20 Mayıs 2021
Kabul Tarihi
22 Haziran 2021
Yayımlandığı Sayı
Yıl 2021 Sayı: 14
APA
Sezen, A., & Keskin, K. (2021). Hybrid Control of DC - DC Buck Boost Converter. Demiryolu Mühendisliği, 14, 99-109. https://doi.org/10.47072/demiryolu.940241
AMA
1.Sezen A, Keskin K. Hybrid Control of DC - DC Buck Boost Converter. Demiryolu Mühendisliği. 2021;(14):99-109. doi:10.47072/demiryolu.940241
Chicago
Sezen, Alperen, ve Kemal Keskin. 2021. “Hybrid Control of DC - DC Buck Boost Converter”. Demiryolu Mühendisliği, sy 14: 99-109. https://doi.org/10.47072/demiryolu.940241.
EndNote
Sezen A, Keskin K (01 Temmuz 2021) Hybrid Control of DC - DC Buck Boost Converter. Demiryolu Mühendisliği 14 99–109.
IEEE
[1]A. Sezen ve K. Keskin, “Hybrid Control of DC - DC Buck Boost Converter”, Demiryolu Mühendisliği, sy 14, ss. 99–109, Tem. 2021, doi: 10.47072/demiryolu.940241.
ISNAD
Sezen, Alperen - Keskin, Kemal. “Hybrid Control of DC - DC Buck Boost Converter”. Demiryolu Mühendisliği. 14 (01 Temmuz 2021): 99-109. https://doi.org/10.47072/demiryolu.940241.
JAMA
1.Sezen A, Keskin K. Hybrid Control of DC - DC Buck Boost Converter. Demiryolu Mühendisliği. 2021;:99–109.
MLA
Sezen, Alperen, ve Kemal Keskin. “Hybrid Control of DC - DC Buck Boost Converter”. Demiryolu Mühendisliği, sy 14, Temmuz 2021, ss. 99-109, doi:10.47072/demiryolu.940241.
Vancouver
1.Alperen Sezen, Kemal Keskin. Hybrid Control of DC - DC Buck Boost Converter. Demiryolu Mühendisliği. 01 Temmuz 2021;(14):99-109. doi:10.47072/demiryolu.940241
Cited By
Simulation of fuzzy logic and PI control methods on a bridgeless isolated SEPIC converter for electric vehicle chargers
International Advanced Researches and Engineering Journal
https://doi.org/10.35860/iarej.1501059