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JCR Impact Factor: 0.800
JCR 5-Year IF: 1.000
SCOPUS CiteScore: 2.0
Issues per year: 4
Current issue: Feb 2024
Next issue: May 2024
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PUBLISHER

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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2023-Jun-28
Clarivate Analytics published the InCites Journal Citations Report for 2022. The InCites JCR Impact Factor of Advances in Electrical and Computer Engineering is 0.800 (0.700 without Journal self-cites), and the InCites JCR 5-Year Impact Factor is 1.000.

2023-Jun-05
SCOPUS published the CiteScore for 2022, computed by using an improved methodology, counting the citations received in 2019-2022 and dividing the sum by the number of papers published in the same time frame. The CiteScore of Advances in Electrical and Computer Engineering for 2022 is 2.0. For "General Computer Science" we rank #134/233 and for "Electrical and Electronic Engineering" we rank #478/738.

2022-Jun-28
Clarivate Analytics published the InCites Journal Citations Report for 2021. The InCites JCR Impact Factor of Advances in Electrical and Computer Engineering is 0.825 (0.722 without Journal self-cites), and the InCites JCR 5-Year Impact Factor is 0.752.

2022-Jun-16
SCOPUS published the CiteScore for 2021, computed by using an improved methodology, counting the citations received in 2018-2021 and dividing the sum by the number of papers published in the same time frame. The CiteScore of Advances in Electrical and Computer Engineering for 2021 is 2.5, the same as for 2020 but better than all our previous results.

2021-Jun-30
Clarivate Analytics published the InCites Journal Citations Report for 2020. The InCites JCR Impact Factor of Advances in Electrical and Computer Engineering is 1.221 (1.053 without Journal self-cites), and the InCites JCR 5-Year Impact Factor is 0.961.

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  2/2010 - 2

 HIGHLY CITED PAPER 

Dynamic Analysis of Permanent Magnet Synchronous Generator with Power Electronics

ONER, Y. See more information about ONER, Y. on SCOPUS See more information about ONER, Y. on IEEExplore See more information about ONER, Y. on Web of Science, BEKIROGLU, N. See more information about  BEKIROGLU, N. on SCOPUS See more information about  BEKIROGLU, N. on SCOPUS See more information about BEKIROGLU, N. on Web of Science, OZCIRA, S. See more information about OZCIRA, S. on SCOPUS See more information about OZCIRA, S. on SCOPUS See more information about OZCIRA, S. on Web of Science
 
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Download PDF pdficon (2,646 KB) | Citation | Downloads: 4,335 | Views: 1,170

Author keywords
permanent magnet DC motor, permanent magnet synchronous generator, Pulse Width Modulation

References keywords
energy(4)
No common words between the references section and the paper title.

About this article
Date of Publication: 2010-05-31
Volume 10, Issue 2, Year 2010, On page(s): 11 - 15
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2010.02002
Web of Science Accession Number: 000280312600002
SCOPUS ID: 77954645093

Abstract
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Full text preview
Permanent magnet DC motor-generators (PMDC, PMSG) have been widely used in industrial and energy sectors recently. Power control of these systems can be achieved by controlling the output voltage. In this study, PMDC-PMSG systems are mathematically modeled and simulated in MATLAB and Simulink software. Then the results are discussed. A low power permanent magnet synchronous generator is driven by a permanent magnet DC motor and the output voltage is controlled by a frequency cycle-converter. The output of a half-wave uncontrolled rectifier is applied to an SPWM inverter and the power is supplied to a 300V, 50Hz load. The load which is connected to an LC filter is modeled by state-space equations. LC filter is utilized in order to suppress the voltage oscillations at the inverter output.


References | Cited By

Cited-By Clarivate Web of Science

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Cited-By SCOPUS

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Cited-By CrossRef

[1] Modeling and Operational Testing of an Isolated Variable Speed PMSG Wind Turbine with Battery Energy Storage, BAROTE, L., MARINESCU, C., Advances in Electrical and Computer Engineering, ISSN 1582-7445, Issue 2, Volume 12, 2012.
Digital Object Identifier: 10.4316/aece.2012.02014
[CrossRef] [Full text]

[2] Combined Harmonic Reduction and DC Voltage Regulation of A Single DC Source Five-Level Multilevel Inverter for Wind Electric System, Thayumanavan, Porselvi, Kaliyaperumal, Deepa, Subramaniam, Umashankar, Bhaskar, Mahajan Sagar, Padmanaban, Sanjeevikumar, Leonowicz, Zbigniew, Mitolo, Massimo, Electronics, ISSN 2079-9292, Issue 6, Volume 9, 2020.
Digital Object Identifier: 10.3390/electronics9060979
[CrossRef]

[3] Comparative Analysis of Permanent Magnet Synchronous Generators with Mechanical Energy Storage according to Machine Types, PARK, Y.-S., Advances in Electrical and Computer Engineering, ISSN 1582-7445, Issue 1, Volume 21, 2021.
Digital Object Identifier: 10.4316/AECE.2021.01001
[CrossRef] [Full text]

[4] Finite-Element Analysis of a 15-MW High-Temperature Superconductor Synchronous Generator for Offshore Wind Energy Applications, Lloberas, Joaquim, IEEE Transactions on Applied Superconductivity, ISSN 1051-8223, Issue 6, Volume 25, 2015.
Digital Object Identifier: 10.1109/TASC.2015.2493124
[CrossRef]

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Faculty of Electrical Engineering and Computer Science
Stefan cel Mare University of Suceava, Romania


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