Microcontroller Based Wye-Delta Starter and Protection Relay for Cage Rotor Induction Motor
Yıl 2017,
Cilt: 17 Sayı: 1, 3267 - 3274, 27.03.2017
Mehmet Onur Gulbahce
,
Derya Ahmet Kocabas
,
Aysel Ersoy Yılmaz
Öz
In this study, PIC 18F4520 based wye-delta starting
and protection relay was designed and manufactured with semiconductor devices for
three phase cage rotor induction motors. Protection relay controls the phase
absence and phase sequence before motor starting process. Designed relay system
performs better than that of other electromechanical starting and protection
relays, due to the decrease in the number of electromechanical components,
total volume of relay, complexity of system. Furthermore, the use of microcontroller
and semiconductor devices makes the new starter and protection relay design more
robust and more reliable.
Kaynakça
- [1] Chapman Stephen J., Electric Machinery Fundamentals, McGraw-Hill, New York, 1991.
- [2] Fitzgerald A. E., Charles Kingsley, and Stephen D. Umans., Electric Machinery. McGraw-Hill, Boston, 2003.
- [3] Mergen A. F., Zorlu S., Electrical Machines-II- Asynchronous Machines, Birsen Publisher, Istanbul, 2009 (In Turkish)
- [4] Mergen A. F., Kocabas D. A., Windings in Electrical Machines, Birsen Publisher, Istanbul, 2009 (In Turkish)
- [5] Gieras J. F., Electrical Machines: Fundamentals of Electromechanical Energy Conversion, CRC Press, Portland, 2016.
- [6] Colak I., Bayindir R., “Implementation of the Classical Starting Techniques Using
- [7] Bayindir R., Demirbas S., Irmak E., Bekiroglu E., “Design and Implementation of Microcontroller Based Starting and Protection Relay for Induction Motors”, Journal of Polytechnic, Vol: 10, No: 1, pp. 1-5, 2007.
- [8] Regulations of Internal Electrical Installation, Retrieved January 12, 2017, from http://www.emo.org.tr/ekler/cc5a85842d8d326_ek.pdf
- [9] PIC18F2420/2520/4420/4520 Data Sheet, Retrieved January 12, 2017, from http://ww1.microchip.com/downloads/en/devicedoc/39631a.pdf
- [10] MOC 3041 Data Sheet, Retrieved January 12, 2017, from https://www.fairchildsemi.com/datasheets/MO/MOC3041M.pdf.
Yıl 2017,
Cilt: 17 Sayı: 1, 3267 - 3274, 27.03.2017
Mehmet Onur Gulbahce
,
Derya Ahmet Kocabas
,
Aysel Ersoy Yılmaz
Kaynakça
- [1] Chapman Stephen J., Electric Machinery Fundamentals, McGraw-Hill, New York, 1991.
- [2] Fitzgerald A. E., Charles Kingsley, and Stephen D. Umans., Electric Machinery. McGraw-Hill, Boston, 2003.
- [3] Mergen A. F., Zorlu S., Electrical Machines-II- Asynchronous Machines, Birsen Publisher, Istanbul, 2009 (In Turkish)
- [4] Mergen A. F., Kocabas D. A., Windings in Electrical Machines, Birsen Publisher, Istanbul, 2009 (In Turkish)
- [5] Gieras J. F., Electrical Machines: Fundamentals of Electromechanical Energy Conversion, CRC Press, Portland, 2016.
- [6] Colak I., Bayindir R., “Implementation of the Classical Starting Techniques Using
- [7] Bayindir R., Demirbas S., Irmak E., Bekiroglu E., “Design and Implementation of Microcontroller Based Starting and Protection Relay for Induction Motors”, Journal of Polytechnic, Vol: 10, No: 1, pp. 1-5, 2007.
- [8] Regulations of Internal Electrical Installation, Retrieved January 12, 2017, from http://www.emo.org.tr/ekler/cc5a85842d8d326_ek.pdf
- [9] PIC18F2420/2520/4420/4520 Data Sheet, Retrieved January 12, 2017, from http://ww1.microchip.com/downloads/en/devicedoc/39631a.pdf
- [10] MOC 3041 Data Sheet, Retrieved January 12, 2017, from https://www.fairchildsemi.com/datasheets/MO/MOC3041M.pdf.