Open Access Open Access  Restricted Access Subscription or Fee Access

Modelling and Simulation of High Step up DC to AC Converter for Microsource Application

R. Sowmya, S. Rama Reddy

Abstract


This paper deals with modelling and simulation of high step up DC – AC converter with micro source at the input. The 15V DC is stepped up to 230V DC using high step up DC-DC Converter. This DC is converted into AC using a single phase inverter. The DC-AC converter system is modeled and simulated using the blocks of simulink and the results are presented in this paper.


 


Keywords


DC to AC Converter

Full Text:

PDF

References


C.L. Smallwood, “Distributed generation in autonomous and non autonomous micro grids”, in AProc IEEE Rural Electric Power Conf., May 2002, pp D1-1-D1-6.

E.M. Fleming and I.A. Hiskens, “Dynamic of a microgrid supplied by solid oxide fuel cells”. in Proc. IEEE,IREP Symp., Aug 2007, pp 1-10.

R.H. Lasseter, “MicroGrids,” IEEE, Power Eng. Soc.Winter Meet., 2002 Vol.1 pp 305-308.

A.K wasinskim and P.T. Krein, “A microgrid based telecom power system using modular multiple input DC-DC converters, “ in Proc. IEEE Int. Telecommun. Energy Conf. (INTELEC) 2005, pp 515-520.

B. Axelrod, Y Berkovich and A.Ioinovici, “Switched-capacitor/switched inductor structures for getting transformerless hybrid DC-DC PWM converters,”

F.L. Luo, “Switched-capacitorized DC/DC converters” in Proc. IEEE cConf. Ind. Electron. Appl. (ICIEA), 2009. pp. 1074-1079.

O. Abutbul. A. Gherlitz, Y. Berkovich, and A. Ioinovici, “Step-up switching-mode converter with high voltage gain using a switched-capacitor circuit”, IEEE trans. Syst. 1, Fundam. Theory Appl., vol.50, no.8, pp 1098-1102, Aug. 2003.

F.L. Luo and H. Ye, “Positive output multiple-lift push-pull switched-capacitor Luo-converters”, IEEE Trans. Ind. Electron., vol. 51, no.3, pp.594-602, Jun. 2004.

F.L. Luo, “Six self-lift DC-DC converters, voltage lift technique”, IEEE Trans. Ind. Electron., vol. 48, no.6, pp.1268-1272, Dec. 2001.

D.Zhou, A. Pietkiewicz, and S. Cuk, “A three-switch high-voltage converter”, IEEE Trans. Power Electron, vol. 14, no.1, pp.177-183, Jan. 1999.

L.S.Yang, Tamil Nadu Coop UnionJ.Liang, and J.F.Chen, “Transformerless DC-DC converters with high step up voltage gain,” IEEE Trans. Ind. Electron., vol.56 no.8, pp.3144-3152, Aug, 2009.

N.P.Papanikolaou and E.C. Tatakis, “Active voltage clamp in flyback converters operating in CCM mode under wide load variation,” IEEE Trans. Ind. Electron, vol.51, no.3, pp.632-640, Jun, 2004.

B.R.Lin and F.Y.Hsieh, “Soft-switching zeta-flyback converter with a buck-boost type of active clamp,” IEEE Trans. Ind. Electron, vol.54, no.5, pp. 2813-2822, Oct, 2007

F.Zhang and Y.Yan, “Novel forward-flyback hybrid bidirectional DC-DC converter,” IEEE Trans, Ind. Electron, vol.56, no.5, pp.1578-1584 May 2009.

K.C.Tseng and Tamil Nadu Coop UnionJ.Liang, “Novel high-efficiency step-up converter,” Proc. IEE Electric Power Appl., vol.151, no.2, pp. 182-190, Mar, 2004.

Q.Zhan and F.C.Lee , “High-efficiency, high step-up DC-DC converters,” IEEE Trans. Power Electron., vol.18, no.1, pp. 65-73, Jan, 2003.

K.B.Park, H.W.Seong, H.S.Kim, G.W.Moon, and M.J. Youn, “Integrated boost-sepic converter for high step-up applications,” in Proc. IEEE power Electron. Spec. Conf. (PESC), 2008, pp. 944-950.

S.K.Changchien, Tamil Nadu Coop UnionJ.Liang, J.F.Chen, and L.S.Yang, “Novel high step-up DC-DC converter for fuel cell energy conversion system.” IEEE Trans. Ind. Electron. vol.57, no.6, pp.2007-2017, Jun, 2010.

R.J.Wai, C.Y.Lin, R.Y.Duan, and Y.R.Chang, “High-efficiency DC-DC converter with high voltage gain and reduced switch stress.” IEEE Trans. Ind. Electron, vol.5, no.14, pp.354-364, Feb, 2007.

R.J.Wai, R.Y.Duan, “High step-up converter with coupled-inductor,” IEEE Trans. Power Electron., vol.20, no.5, pp.1025-1035, Sep, 2005.

J.W.Back, M.H.Ryon, T.J.Kim, D.W.Yoo, and J.S.Kim, “High boost converter using voltage multiplier,” in Proc. 31st Annu. Conf. Ind. Electron. Soc., IEEE IECON, 2005, pp. 567-572.

C.S.Leu and S.Y.Wu, “Anovel single-switch high conversion ratio DC-DC converter.” in Proc. IEEE Power Electron. Drive Syst. (PEDS), 2009, pp.1097-1101.

B.Axelrod, Y.Berkovich, and A.Ioinovici, “Transformerless DC-DC converters with a very high DC line-to-load voltage ratio.” in Proc. IEEE IScAS, 2003, vol.3, pp.435-438.

B.Axelrod, Y.Berkovich, S.Tapuchi, and A.Ioinovici, “Steep conversion ration Cuk. Zeta. and Sepic converters based on a switched coupled-inductor cell.” in Proc. IEEE Power Electron. Spec. Conf. (PESC), 2008, pp.3009-3014.

G.Zhu and A.Ioinovici, “Switched-capacitor power supplies: DC voltage ratio. efficiency. ripple, regulation.” in Proc. IEEE Int. Symp. Circuits Syst. (ISCAS), 1996, pp.553-556.

R.J.Wai and R.Y.Duan, “High-efficiency DC-DC converter with high voltage gain.” IEEE Proc. Electr. Power Appl., vol.152, no.4, pp.793-802.


Refbacks

  • There are currently no refbacks.


Creative Commons License
This work is licensed under a Creative Commons Attribution 3.0 License.