Ateş Böceği Algoritması Tabanlı PI Denetleyici Kullanarak Üç Fazlı Vienna Doğrultucunun Dinamik Performansının İncelenmesi
Year 2020,
, 933 - 944, 30.09.2020
Ö. Fatih Keçecioğlu
,
Hakan Açıkgöz
Abstract
Bu çalışmada, üç fazlı Vienna doğrultucunun DA-Bara geriliminin denetimi için metasezgisel algoritmalardan biri olan Ateş Böceği Algoritması (ABA) tabanlı bir PI denetleyici yapısı önerilmiştir. ABA-PI adı verilen önerilen denetleyici yapısı içerisindeki PI denetleyicinin kazanç katsayıları ABA ile belirlenmiştir. ABA-PI denetleyicinin giriş referansı, giriş gerilimi ve yük değişimlerine karşı dinamik performansını incelemek için Matlab/Simulink ortamında kullanılarak benzetim çalışmaları yapılmıştır. Yapılan benzetim çalışmaları sonucunda önerilen ABA-PI denetleyicinin tüm benzetim koşulları altında klasik PI denetleyiciye göre daha başarılı olduğu doğrulanmıştır.
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Year 2020,
, 933 - 944, 30.09.2020
Ö. Fatih Keçecioğlu
,
Hakan Açıkgöz
References
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- Baev, S., Shtessel, Y., Sheffield, M., (2008). Sliding Mode Control of a Unity Power Factor 3-Phase AC/DC Boost Converter, IEEE Southeast Conference, 491-496.
- Coteli, R., Acikgoz, H., Ucar, F., Dandil, B., (2017). Design and implementation of Type-2 fuzzy neural system controller for PWM rectifiers, International Journal of Hydrogen Energy, 42, 32, 20759-20771.
- Acikgoz, H., Kececioglu, O. F., Gani, A., Yildiz, C., Sekkeli, M., (2016). Improved control configuration of PWM rectifiers based on neuro-fuzzy controller, SpringerPlus, 5, 1, 1142.
- Rodriguez, J. R., Dixon, J. W., Espinoza, J. R., Pontt, J., Lezana, P., (2005). PWM regenerative rectifiers: state of the art, IEEE Transactions on Industrial Electronics, 52, 1, 5-22.
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STATCOM, 13th IEEE Conference on Industrial Electronics and Applications (ICIEA), 1431-1436.
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- Li, X., Sun, Y., Wang, H., Su, M., Huang, S., (2018). A Hybrid Control Scheme for Three-Phase Vienna Rectifiers, IEEE Transactions on Power Electronics, 33, 1, 629-640.
- Kedjar, B., Kanaan, H.Y., Al-Haddad, K,. (2014). Vienna Rectifier with Power Quality Added Function, IEEE Transactions on Industrial Electronics, 61, 8, 3847-3856.
- Aissaa, O., Moulahouma, S., Colak, I., Babesc, B., Kabacheaa, N., (2017). Design and real time implementation of three-phase three switchesthree levels Vienna rectifier based on intelligent controllers, Applied Soft Computing, 56,158-172.
- Dang, C., Tong, X., Yin, J., Huang, J., Xu, Y. (2017). The neutral point-potential and current model predictive control method for Vienna rectifier, Journal of the Franklin Institute, 354, 7605-7623.
- Sundareswaran, K., Peddapati, S., Palani, S., (2014). MPPT of PV Systems Under Partial Shaded Conditions Through a Colony of Flashing Fireflies, IEEE Transactions on Energy Conversion, 29, 2, 463-472.
- Belkacem, R., Benzıd, R., Bouguechal N. (2017). Multilevel inverter with optimal THD through the firefly algorithm, Archives of Electrical Engineering, 66, 1, 141-154.
- Demirdelen, T., (2018). Kuru Tip Transformatör Optimizasyonuna Yeni Bir Yaklaşım: Ateş Böceği Algoritması, Çukurova Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 33, 1, 87-96.
- Merugumalla, M.K., Navuri, P.K. (2018). PSO and firefly algorithms based control of BLDC motor drive. 2nd International Conference on Inventive Systems and Control (ICISC), 994-999.