Elektronik Güç Transformatörlerinin Darbe Genişlik Modülasyon Doğrultucu Tabanlı Benzetim Çalışması
Year 2014,
Volume: 1 Issue: 1, 33 - 38, 01.07.2016
Hakan Açıkgöz
,
Mustafa Şekkeli
Abstract
Güç transformatörleri enerji iletiminde en önemli bileşenlerden biridir. Fakat bu transformatörler elektrik dağıtım sistemlerindeki en ağır ve pahalı kısımlardan biridir. Bilindiği gibi transformatörlerin boyutu frekans ile ters orantılıdır. Frekans arttırılarak transformatörlerin boyutu küçültülebilmektedir. Mikroişemciler, yarı iletken teknolojileri ve çeşitli denetim algoritmalarındaki hızlı ilerlemelerle birçok araştırmacı tarafından yeni bir transformatör önerilmiştir. Bu yeni güç transformatöleri elektronik güç transformatörü(EGT) olarak adlandırılmaktadır. EGT’ler için literatürde birçok farklı topoloji mevcuttur. Bu çalışmada, üç fazlı darbe genişlik modülasyonu tabanlı EGT’lerin tasarımı ve denetim ilkeleri analiz edilmiştir. Önerilen EGT giriş, izolasyon ve çıkış kısımlarından oluşmaktadır
References
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- [2] Kang M, Enjeti P N, and Pitel I J. "Analysis and Design of Electronic Transformers for Electric Power Distribution system”, IEEE Trans on Power Electronics, vol.14(6), pp. 1133-1141, 1999.
- [3] McMurray , W., Power Converter Circuits Having a High- Frequency Link, U.S Patent 3,517,300, June 23, 1970.
- [4] Ling, C. ,B. Ge, Bi, D. and Ma, Q. ,“An effective power electronic transformer applied to distribution system,” in Electrical Machines and Systems (ICEMS), 2011 International Conference on, , Aug. 2011, pp. 1 –6.
- [5] Mohapatra ,K.K. and Mohan., N., “Matrix Converter Fed Open-ended Power Electronic Transformer For Power System Application”, In Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE, pp.1 –6, july 2008.
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- [7] Iman-Eini, H. , Schanen, JL. , Farhangi1, Barbaroux, Sh. J., Keradec, JP. “A Power Electronic Based Transformer for Feeding Sensitive Loads”, Power Electronics Specialists Conference, 2008. PESC 2008. IEEE, 15-19 June 2008
- [8] Banaei, M. R., Salary, E. “Power Quality Improvement Using Parallel Operation of Power Electronic Transformer”, International Review on Modelling and Simulations (I.R.E.M.O.S.), vol. 4, N. 4, August 2011.
- [9] Banaei, M. R., Salary, E. “Power Delivery by a Novel Multi-Stage DC/AC Converter Based on Multilevel AC/AC Converter”, International Review of Electrical Engineering (I.R.E.E.), vol. 6, N. 5, September-October 2011.
- [10] Mazgar, F.N., Hagh, M.T., Babaei, E., “Distribution Electronic Power Transformer With Reduced Number of Power Switches”, Power Electronics and Drive Systems Technology (PEDSTC), 15-16 Feb. 2012.
- [11] Hanafi, H.M., Shah A., Hamzah, M.K., Hamzah, N.R., “Modeling of Electronic Transformer Design with the Implementation of Single-Phase Matrix Converter using MATLAB/Simulink”, Research and Development (SCOReD), 2009 IEEE Student Conference on, 16-18 Nov. 2009.
- [12] Iman-Eini, H., Farhangi, Sh.,“Analysis and Design of Power Electronic Transformer for Medium Voltage Levels”, in proc. IEEE PESC conf., pp. 843- 847, June 2006.
- [13] Wang, D., Mao, C., Jiming, L. and et al, “The Research on Characteristic of Electronic Power Transformer For Distribution System,” In: IEEE/PES Transmission and Distribution Conference and Exhibition, Asia and Pacific Dalian, China, 1-5, 2005.
- [14] Wrede, H, Staudt, V. and Steimel, A , “Design of an Electronic Power Transformer”, In: Proc. 2002 IECON (Industrial Electronics Society, IEEE 2002 28th Annual Conference), 20002 ,pp.1380-1385.
- [15] Basu, K., Gupta, R.K., Nath, S., Castelino, G.F., Mohapatra, K.K., Mohan, N., “Research in Matrix-Converter Based Three-Phase Power-Electronic Transformers”, Power Electronics Conference (IPEC), 2010 International , 21-24 June 2010, pp.2799- 2803.
- [16] Wang, D., Mao, C. , . Lu, J, Fan, S., Peng, F.Z., “Theory and Application of Distribution Electronic Power Transformer”, Electric Power Syst. Res, vol. 77, pp. 219–226, March 2007.
Simulation Study of Pulse Width Modulation Rectifier Based Power Electronic Transformers
Year 2014,
Volume: 1 Issue: 1, 33 - 38, 01.07.2016
Hakan Açıkgöz
,
Mustafa Şekkeli
Abstract
- Power transformers are one of the most important components of power transmission. But these transformers are one of the heaviest and most expensive parts in an electrical distribution system. It is well known that the size of transformers is inversely proportion to frequency. With an increase in the frequency, the size of transformers can be reduced. By the rapid development of microprocessor, power semiconductor technologies and various intelligent control algorithms, a new transformer has been proposed by many researchers. These new power transformers have been called as electronic power transformer. Many different topologies in literature have been presented for PET. The design and control of three phase PWM rectifier based PET are analyzed in this study. The proposed PET consists of three stages such as input, isolation and output stages.
References
- [1] Chapman, S. J., Elektrik Makinalarının Temelleri, 3.baskı, İstanbul, 2013.
- [2] Kang M, Enjeti P N, and Pitel I J. "Analysis and Design of Electronic Transformers for Electric Power Distribution system”, IEEE Trans on Power Electronics, vol.14(6), pp. 1133-1141, 1999.
- [3] McMurray , W., Power Converter Circuits Having a High- Frequency Link, U.S Patent 3,517,300, June 23, 1970.
- [4] Ling, C. ,B. Ge, Bi, D. and Ma, Q. ,“An effective power electronic transformer applied to distribution system,” in Electrical Machines and Systems (ICEMS), 2011 International Conference on, , Aug. 2011, pp. 1 –6.
- [5] Mohapatra ,K.K. and Mohan., N., “Matrix Converter Fed Open-ended Power Electronic Transformer For Power System Application”, In Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE, pp.1 –6, july 2008.
- [6] Subramanya, S., Anjaneyulu, K.S.R., “Modeling and Simulation of AC/AC Matrix Converter Based Power Electronic Transformer for Power Quality Improvement”, International Journal of Engineering Research & Technology (IJERT), Vol. 1 Issue 5, July – 2012.
- [7] Iman-Eini, H. , Schanen, JL. , Farhangi1, Barbaroux, Sh. J., Keradec, JP. “A Power Electronic Based Transformer for Feeding Sensitive Loads”, Power Electronics Specialists Conference, 2008. PESC 2008. IEEE, 15-19 June 2008
- [8] Banaei, M. R., Salary, E. “Power Quality Improvement Using Parallel Operation of Power Electronic Transformer”, International Review on Modelling and Simulations (I.R.E.M.O.S.), vol. 4, N. 4, August 2011.
- [9] Banaei, M. R., Salary, E. “Power Delivery by a Novel Multi-Stage DC/AC Converter Based on Multilevel AC/AC Converter”, International Review of Electrical Engineering (I.R.E.E.), vol. 6, N. 5, September-October 2011.
- [10] Mazgar, F.N., Hagh, M.T., Babaei, E., “Distribution Electronic Power Transformer With Reduced Number of Power Switches”, Power Electronics and Drive Systems Technology (PEDSTC), 15-16 Feb. 2012.
- [11] Hanafi, H.M., Shah A., Hamzah, M.K., Hamzah, N.R., “Modeling of Electronic Transformer Design with the Implementation of Single-Phase Matrix Converter using MATLAB/Simulink”, Research and Development (SCOReD), 2009 IEEE Student Conference on, 16-18 Nov. 2009.
- [12] Iman-Eini, H., Farhangi, Sh.,“Analysis and Design of Power Electronic Transformer for Medium Voltage Levels”, in proc. IEEE PESC conf., pp. 843- 847, June 2006.
- [13] Wang, D., Mao, C., Jiming, L. and et al, “The Research on Characteristic of Electronic Power Transformer For Distribution System,” In: IEEE/PES Transmission and Distribution Conference and Exhibition, Asia and Pacific Dalian, China, 1-5, 2005.
- [14] Wrede, H, Staudt, V. and Steimel, A , “Design of an Electronic Power Transformer”, In: Proc. 2002 IECON (Industrial Electronics Society, IEEE 2002 28th Annual Conference), 20002 ,pp.1380-1385.
- [15] Basu, K., Gupta, R.K., Nath, S., Castelino, G.F., Mohapatra, K.K., Mohan, N., “Research in Matrix-Converter Based Three-Phase Power-Electronic Transformers”, Power Electronics Conference (IPEC), 2010 International , 21-24 June 2010, pp.2799- 2803.
- [16] Wang, D., Mao, C. , . Lu, J, Fan, S., Peng, F.Z., “Theory and Application of Distribution Electronic Power Transformer”, Electric Power Syst. Res, vol. 77, pp. 219–226, March 2007.