Improved torque and speed performances for DTC+ controlled asynchronous machine by fuzzy switching algorithm
2022
0 görüntülenme
0 i̇ndirme
Danışman: Dr. Öğr. Üyesi Göksu Görel
Özet (EN)
Direct torque control is a vector method of control that is based on stator flux and torque. It was pioneered by Takashi in the mid-1980s. Direct selection of the inverter's output voltage vectors allows control of the asynchronous machine's main parameters, especially the stator flux and electromagnetic torque. These decisions are made in such a way that both quantities remain inside a hysteresis band. Our study is mainly concerned with the minimization of the ripple of the electromagnetic torque and stator flux with the use of the direct torque control method that will be applied to the three-phase induction machine. PID controllers and fuzzy logic will produce the best results in terms of reducing ripple at the related torque and speed control. The results will be shown by using Matlab/Simulink at the end of the article, and a discussion will be made by comparing those two regulator.
Yazar
Dr. Wahıb Hılouan Mohamed
Kurum
Bu Yayına Nasıl Atıf Yapılır
Wahıb Hılouan Mohamed (Master Thesis). Improved torque and speed performances for DTC+ controlled asynchronous machine by fuzzy switching algorithm, 2022, Çankırı Karatekin Üniversitesi.
Anahtar Kelimeler
Lisans
Tüm Hakları Saklıdır
Bu eser belirtilen lisans koşulları altında paylaşılmaktadır.
Çankırı Karatekin Üniversitesi tezlerinden daha fazlası
- Tourism potential of Ankara province(2023)
- The role of ghrelin in overweight and obesity(2023)
- Evaluation of university staff's attitudes to gender roles (The case of Çankırı Karatekin University)(2023)
- The effect of pomegranate peel extract on some physical, chemical and microbiological properties of mesopotamian barb (Capoeta damascina) and yellow barbell (Carasobarbus luteus) fish fillets(2023)
- Ethics of war according to the Prophet (S.A.V.)(2023)
- The role of conservatism in women's participation in Türkiye's working life(2023)
