Güç sistemleri için doğrusal olmayan senkron jenaratör denetleyicisi tasarımı

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2017

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Electrical-Electronics Engineering
The Department of Electrical and Electronics Engineering covers communications, signal processing, high voltage, electrical machines, power distribution systems, radar and electronic warfare, RF, electromagnetic and photonics topics. Most of the theoretical courses in our department are supported by qualified laboratory facilities. Our department has been accredited by MÜDEK since 2013. Within the scope of joint training (COOP), in-company training opportunities are offered to our students. 9 different companies train our students for one semester within the scope of joint education and provide them with work experience. The number of students participating in joint education (COOP) is increasing every year. Our students successfully completed the joint education program that started in the 2019-2020 academic year and started work after graduation. Our department, which provides pre-graduation opportunities to its students with Erasmus, joint education (COOP) and undergraduate research projects, has made an agreement with Upper Austria University of Applied Sciences (Austria) starting from this year and offers its students undergraduate (Atılım University) and master's (Upper Austria) degrees with 3+2 education program. Our department, which has the only European Remote Radio Laboratory in Foundation Universities, has a pioneering position in research (publication, project, patent).

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Bu çalışma sonsuz bara bağlı ve küçük bir elektrik şebekesine bağlı senkron bir jenaratörün denetimi üzerinde durulacaktır. Bu noktada girdiden çıktıya geri beslemeye dayalı doğrusallaştırma yaklaşımı ile sistemler doğrusallaştırılmakta olup yük açısı ve sonuç voltajının denetimi yapılmaktadır. Yapılan çalışmaların performansı benzetimler yoluyla doğrulanmaktadır. Sonuçlar algoritmanın başarılı olduğunu göstermektedir. Anahtar Kelimeler: Yük açısı, sonuç voltajı, senkron jenaratör denetimi, girdi-çıktı doğrusallaştırması
This thesis reviews the control of synchrounous generetor connected to infinite bus in small electrical power system grid and introduces input-output feedback linearization in detail as a method in order to control the load angle (δ) and the terminal voltage (Vt) of synchrounous generetor. Involving simulation design, the application of the input-output feedback linearization method on our system was verified. The results approved that the algorithm works satisfactory. Keywords: Power angle, Terminal voltage, synchronous generator control, Input-output feedback linearization method

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Elektrik ve Elektronik Mühendisliği, Electrical and Electronics Engineering

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71