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TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ

Yıl 2006, Cilt: 21 Sayı: 1, 107 - 114, 01.04.2013

Öz

Bu çalışmada, güç transformatörlerinin iç kısa devre akımlarının modellenmesi ve bilgisayar destekli benzetimi gerçekleştirilmiştir. Güç transformatörü sarım – sarım ve sarım – toprak arızalarının benzetimi bu çalışmanın ana öğesini oluşturmaktır. İç arızalarının ayrıntılı matematiksel modeli iletim hattı modeli (İHM) kullanılarak çıkartılmıştır ve giriş büyüklükleri arasındaki işlevsel ilişkiler ortaya konmuştur. Bu çalışmada ortaya konan bilgisayar destekli benzetimler, sarım – sarım ve sarım – toprak arızaları için İHM tekniğinin Matlab ™ uygulamalarından meydana gelmektedir. Benzetimlerde kullanılan devre parametreleri laboratuar ortamında gerçekleştirilen gerçek zamanlı deneylerle desteklenmektedir.

Kaynakça

  • T. Kawamura, M. Ueda, K. Ando, T. Maeda, Y. Abiru, M. Watanabe, K. Moritsu “Prevention Of Tank Rupture Due To Internal Fault Of Oil Filled Transformer”, CIGRE International Conference on Large High Voltage Electric Systems, 12-02, 1988 Session.
  • Rahimpour, E.; Christian, J.; Feser, K.; Mohseni, H., “Transfer Function Method to Diagnose Axial Displacement and Radial Deformation of Transformer Windings”, Power Delivery, IEEE Transactions on, Volume 18, Issue 2, April 2003 Page(s):493 – 505.
  • P. P. Buckle, K. L. Butler, N. D. R. Sarma, A. Kopp “Simulation Of Incipient Transformer Faults”, Power System Automation Laboratory Texas A&M University, College Station, TX.
  • P. Bastard, P. Bertrand, M. Mevnier “A Transformer Model For Winding Faults Studies”, IEEE Transaction on Power Delivery, Vol. 9, No. 2, April 1994.
  • Palmer-Buckle, P.; Butler, K.L.; Sarma, N.D.R, “Characteristics of Transformer Parameters During Internal Winding Faults Based on Experimental Measurements”, Transmission and Distribution Conference, 1999 IEEE, Volume 2, 11-16 April 1999 Page(s):882 - 887 vol.2.
  • Wang, H.; Butler, K.L, “Finite Element Analysis of Internal Winding Faults in Distribution Transformers”, Power Delivery, IEEE Transactions on, Volume 16, Issue 3, Jul 2001 Page(s):422 – 428.
  • Wang, H.; Butler, K.L,” Neural Network Modeling of Distribution Transformers With Internal Short Circuit Winding Faults”, Power Industry Computer Applications, 2001. PICA 2001. Innovative Computing for Power - Electric Energy Meets the Market. 22nd IEEE Power Engineering Society International Conference on, 20-24 May 2001 Page(s):122 – 127.
  • Hang Wang; Butler, K.L, “Modeling Transformers With Internal Incipient Faults”, Power Delivery, IEEE Transactions on, Volume 17, Issue 2, April 2002 Page(s):500 – 509.
  • Christos Christopoulos, The Transmission Line Modelling Method TLM, IEEE/OUP Series on Electromagnetic Wave Theory, 1995.
  • Hui, S.Y.R., C. Christopolus, “Non-linear Transmission Line Modelling Technique for Modelling Power Electronic Circuits”, European Power Electronics Conference, Florence. Proceedings Vol. 1, 80-84, 1991.
  • O. Ozgonenel, D.W.P. Thomas, C. Christopoulos, "Modelling and Identifying of Transformer Faults”, IEEE Power Engineering Society, PowerTech 2005, 27-30 June 2005, St. Petersburg, Russia. ISBN:5-93208-034-0.
  • Karen L. Butler, Mustafa Bagriyanik, “Identifying Transformer Incipient Events for Maintaining Distribution System Reliability”, Proceedings of the 36th Hawaii International Conference on System Sciences, 2003.
  • M. E. Hamedani Golshan, M. Saghaian-nejad, A. Saha, H. Samet, “A New Method for Recognizing Internal Faults From Inrush Current Conditions in Digital Protection of Power Transformers”, EPSR., 71, 61-71, 004
Yıl 2006, Cilt: 21 Sayı: 1, 107 - 114, 01.04.2013

Öz

Kaynakça

  • T. Kawamura, M. Ueda, K. Ando, T. Maeda, Y. Abiru, M. Watanabe, K. Moritsu “Prevention Of Tank Rupture Due To Internal Fault Of Oil Filled Transformer”, CIGRE International Conference on Large High Voltage Electric Systems, 12-02, 1988 Session.
  • Rahimpour, E.; Christian, J.; Feser, K.; Mohseni, H., “Transfer Function Method to Diagnose Axial Displacement and Radial Deformation of Transformer Windings”, Power Delivery, IEEE Transactions on, Volume 18, Issue 2, April 2003 Page(s):493 – 505.
  • P. P. Buckle, K. L. Butler, N. D. R. Sarma, A. Kopp “Simulation Of Incipient Transformer Faults”, Power System Automation Laboratory Texas A&M University, College Station, TX.
  • P. Bastard, P. Bertrand, M. Mevnier “A Transformer Model For Winding Faults Studies”, IEEE Transaction on Power Delivery, Vol. 9, No. 2, April 1994.
  • Palmer-Buckle, P.; Butler, K.L.; Sarma, N.D.R, “Characteristics of Transformer Parameters During Internal Winding Faults Based on Experimental Measurements”, Transmission and Distribution Conference, 1999 IEEE, Volume 2, 11-16 April 1999 Page(s):882 - 887 vol.2.
  • Wang, H.; Butler, K.L, “Finite Element Analysis of Internal Winding Faults in Distribution Transformers”, Power Delivery, IEEE Transactions on, Volume 16, Issue 3, Jul 2001 Page(s):422 – 428.
  • Wang, H.; Butler, K.L,” Neural Network Modeling of Distribution Transformers With Internal Short Circuit Winding Faults”, Power Industry Computer Applications, 2001. PICA 2001. Innovative Computing for Power - Electric Energy Meets the Market. 22nd IEEE Power Engineering Society International Conference on, 20-24 May 2001 Page(s):122 – 127.
  • Hang Wang; Butler, K.L, “Modeling Transformers With Internal Incipient Faults”, Power Delivery, IEEE Transactions on, Volume 17, Issue 2, April 2002 Page(s):500 – 509.
  • Christos Christopoulos, The Transmission Line Modelling Method TLM, IEEE/OUP Series on Electromagnetic Wave Theory, 1995.
  • Hui, S.Y.R., C. Christopolus, “Non-linear Transmission Line Modelling Technique for Modelling Power Electronic Circuits”, European Power Electronics Conference, Florence. Proceedings Vol. 1, 80-84, 1991.
  • O. Ozgonenel, D.W.P. Thomas, C. Christopoulos, "Modelling and Identifying of Transformer Faults”, IEEE Power Engineering Society, PowerTech 2005, 27-30 June 2005, St. Petersburg, Russia. ISBN:5-93208-034-0.
  • Karen L. Butler, Mustafa Bagriyanik, “Identifying Transformer Incipient Events for Maintaining Distribution System Reliability”, Proceedings of the 36th Hawaii International Conference on System Sciences, 2003.
  • M. E. Hamedani Golshan, M. Saghaian-nejad, A. Saha, H. Samet, “A New Method for Recognizing Internal Faults From Inrush Current Conditions in Digital Protection of Power Transformers”, EPSR., 71, 61-71, 004
Toplam 13 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Makaleler
Yazarlar

Okan Özgönenel Bu kişi benim

Yayımlanma Tarihi 1 Nisan 2013
Gönderilme Tarihi 28 Mart 2013
Yayımlandığı Sayı Yıl 2006 Cilt: 21 Sayı: 1

Kaynak Göster

APA Özgönenel, O. (2013). TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 21(1), 107-114.
AMA Özgönenel O. TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ. GUMMFD. Nisan 2013;21(1):107-114.
Chicago Özgönenel, Okan. “TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 21, sy. 1 (Nisan 2013): 107-14.
EndNote Özgönenel O (01 Nisan 2013) TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 21 1 107–114.
IEEE O. Özgönenel, “TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ”, GUMMFD, c. 21, sy. 1, ss. 107–114, 2013.
ISNAD Özgönenel, Okan. “TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 21/1 (Nisan 2013), 107-114.
JAMA Özgönenel O. TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ. GUMMFD. 2013;21:107–114.
MLA Özgönenel, Okan. “TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, c. 21, sy. 1, 2013, ss. 107-14.
Vancouver Özgönenel O. TRANSFORMATÖRLERDE İÇ ARIZA AKIMLARININ BENZEŞİMİ. GUMMFD. 2013;21(1):107-14.