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Stefan cel Mare
University of Suceava
Faculty of Electrical Engineering and
Computer Science
13, Universitatii Street
Suceava - 720229
ROMANIA

Print ISSN: 1582-7445
Online ISSN: 1844-7600
WorldCat: 643243560
doi: 10.4316/AECE


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  3/2014 - 14

 HIGHLY CITED PAPER 

Single-Phase Direct AC-AC Boost Converter

LUCANU, M. See more information about LUCANU, M. on SCOPUS See more information about LUCANU, M. on IEEExplore See more information about LUCANU, M. on Web of Science, URSARU, O. See more information about  URSARU, O. on SCOPUS See more information about  URSARU, O. on SCOPUS See more information about URSARU, O. on Web of Science, AGHION, C. See more information about  AGHION, C. on SCOPUS See more information about  AGHION, C. on SCOPUS See more information about AGHION, C. on Web of Science, LUCANU, N. See more information about LUCANU, N. on SCOPUS See more information about LUCANU, N. on SCOPUS See more information about LUCANU, N. on Web of Science
 
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Download PDF pdficon (851 KB) | Citation | Downloads: 949 | Views: 3,902

Author keywords
choppers, circuit simulation, power conversion

References keywords
power(17), phase(5), lucanu(5), chopper(5), supplies(4), single(4), improved(4)
Blue keywords are present in both the references section and the paper title.

About this article
Date of Publication: 2014-08-31
Volume 14, Issue 3, Year 2014, On page(s): 107 - 112
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2014.03014
Web of Science Accession Number: 000340869800014
SCOPUS ID: 84907321049

Abstract
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Full text preview
The paper presents a single-phase direct AC-AC boost converter. The circuit of the converter is simple and it has good performances, irrespective of the load nature. The adequate functioning and high performance of the circuit (the efficiency and waveform of the absorbed input current) were tested both by simulation and experimentally.


References | Cited By  «-- Click to see who has cited this paper

[1] G. N. Revenkar, D. S. Trasi, Symmetrical Pulse Width Modulated A. C. Chopper, IEEE Trans. on Ind. Electron. Contr. Instrum., vol.IECI-24, 1977, pp. 41 - 45.

[2] G. Chose, M. Park, An Improved PWM Technique for A.C. Chopper, IEEE Trans. on Power Electronics, vol 4, 1989, pp. 496 - 505.
[CrossRef] [Web of Science Times Cited 61] [SCOPUS Times Cited 104]


[3] D. Jang, G. Choe, Asymmetrical PWM Method for A.C. Chopper with Improved Input Power Factor, IEEE PESC Conf. Rec, 1991, pp. 838 - 845.
[CrossRef]


[4] Jang Do-Hyum, Ghy-Ha Choe, M. Ehsany, Asymmetrical PWM Technique with Harmonic Elimination and Power Factor Control in A.C. Chopper, IEEE Trans. on Power Electron., vol. 10, Nr. 2, March 1995, pp.175-184.
[CrossRef] [Web of Science Times Cited 25] [SCOPUS Times Cited 30]


[5] M. Lucanu, O.Ursaru, C. Aghion, Single Phase A.C. Choppers with I.G.B.T's, Proceedings of the International Symposium on Signal, Circuits and Systems SCS 2003, July 10-11, 2003, pp. 213 - 216.

[6] L. Congwei, W. Bin, N. R. Zargari, X. Devei, and W. Jiacheng, A novel three-phase three leg AC/AC converter using nine IGBT's, IEEE Trans. on Power Electron., vol. 24, Nr. 5, May 2009, pp. 1151 - 1160.
[CrossRef] [Web of Science Times Cited 203] [SCOPUS Times Cited 248]


[7] R. Lai, F. Wang, R. Burgos, Y. Pei, D. Boroyevich, B.Wang, T. A. Lipo, V. D. Immanuel, K. J. Karimi, A Systematic topology evaluation methodology for high-density three-phase PWM AC-AC converters, IEEE Trans. on Power Electron., vol. 24, Nr. 7, July 2009, pp. 1671 - 1681.
[CrossRef] [Web of Science Times Cited 147] [SCOPUS Times Cited 187]


[8] M. Lucanu, O.Ursaru, C. Aghion, Single Phase A.C. Choppers with Inductive Load and Improved Efficiency, Proceedings of the International Symposium on Signal, Circuits and Systems, ISSCS 2005, vol. 2, July 14-15 2005, pp. 597 - 600.
[CrossRef] [SCOPUS Times Cited 5]


[9] J. H. Kim, B. D. Min, B. H. Kwon, S. C. Won, A PWM buck-boost AC chopper solving the commutation problem, IEEE Trans. on Ind. Electron., vol 45, No. 5 1998, pp. 832 - 835.
[CrossRef] [Web of Science Times Cited 50] [SCOPUS Times Cited 61]


[10] L. Li, Y. Yang, Q. Zhong, Novel family of single-stage three level A.C. Choppers, IEEE Trans. on Power Electron., vol. 26, Nr. 2 2001, pp. 504 - 511.
[CrossRef] [Web of Science Times Cited 29] [SCOPUS Times Cited 35]


[11] Thiago B. Soliero, Clovis A. Petry, Joao C. dos S. Fagundes, Yvo Barbi, Direct AC-AC converters using commercial power modules applied to voltage restorers, IEEE Trans. on Ind. Electron., vol 58, No. 1 2011, pp. 278 - 288.
[CrossRef] [Web of Science Times Cited 50] [SCOPUS Times Cited 54]


[12] C. Aghion, M. Lucanu, O.Ursaru, N. Lucanu, Direct AC-AC Step-Down Single-Phase Converter with Improved Performances, Electronics and Electrical Engineering, vol.18, no.10 2012, pp. 33 - 36.

[13] B. Mammano, B. Carsten, Understanding and optimizing electromagnetic compatibility in switch-mode power supplies, TI power seminar series 2003.

[14] J. Harper, Electromagnetic compatibility design for power supplies, Fairchild Semiconductor power seminar series 2004/2005

[15] R. L. Ozenbaugh, EMI filter design , CRC, Nov 2000

[16] C. Basso, Switch-Mode Power Supplies SPICE Simulations and Practical Designs, McGraw-Hill, 2008

[17] A. Hesener, Electromagnetic Interference (EMI) in Power Supplies, Fairchild Semiconductor Power Seminar 2010-2011

[18] Programming languages — C, International Standard, ISO/IEC 9899:TC2

[19] A. Valachi, M. Timis, M. Danubianu, Some Contributions to Synthesis and Implementation of Multifunctional Registers, 11th WSEAS Int.Conf. on Automatic Control, Modelling & Simulation (acmos'09), Istanbul, Turkey, May 30 - June 1, 2009, p.146-149.

[20] K. B. Bose,Microcomputer Control of Power Electronics and Drive, IEEE Press. New York, 1987.

[21] I. V. Pletea, M., Pletea, D., Alexa, N., Lucanu, "Simulations and Analysis and Operating Regime as Rectifier with Power Factor Correction of Two - Quadrant Converter with RNSIC," Advances in Electrical and Computer Engineering, Volume 11, Number 3, Year 2011, pp. 29 - 34.
[CrossRef] [Full Text] [Web of Science Times Cited 4] [SCOPUS Times Cited 8]




References Weight

Web of Science® Citations for all references: 569 TCR
SCOPUS® Citations for all references: 732 TCR

Web of Science® Average Citations per reference: 26 ACR
SCOPUS® Average Citations per reference: 33 ACR

TCR = Total Citations for References / ACR = Average Citations per Reference

We introduced in 2010 - for the first time in scientific publishing, the term "References Weight", as a quantitative indication of the quality ... Read more

Citations for references updated on 2023-01-25 12:19 in 65 seconds.




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Stefan cel Mare University of Suceava, Romania


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