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            <front>

                <journal-meta>
                                    <journal-id></journal-id>
            <journal-title-group>
                                                                                    <journal-title>Balkan Journal of Electrical and Computer Engineering</journal-title>
            </journal-title-group>
                            <issn pub-type="ppub">2147-284X</issn>
                                        <issn pub-type="epub">2147-284X</issn>
                                                                                            <publisher>
                    <publisher-name>MUSA YILMAZ</publisher-name>
                </publisher>
                    </journal-meta>
                <article-meta>
                                        <article-id pub-id-type="doi">10.17694/bajece.503207</article-id>
                                                                <article-categories>
                                            <subj-group  xml:lang="en">
                                                            <subject>Electrical Engineering</subject>
                                                    </subj-group>
                                            <subj-group  xml:lang="tr">
                                                            <subject>Elektrik Mühendisliği</subject>
                                                    </subj-group>
                                    </article-categories>
                                                                                                                                                        <title-group>
                                                                                                                        <article-title>Power Control of Single Phase Active Rectifier</article-title>
                                                                                                                                        </title-group>
            
                                                    <contrib-group content-type="authors">
                                                                        <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0002-7844-9014</contrib-id>
                                                                <name>
                                    <surname>Karafil</surname>
                                    <given-names>Akif</given-names>
                                </name>
                                                                    <aff>BILECIK SEYH EDEBALI UNIVERSITY</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0003-1068-244X</contrib-id>
                                                                <name>
                                    <surname>Özbay</surname>
                                    <given-names>Harun</given-names>
                                </name>
                                                                    <aff>BILECIK SEYH EDEBALI UNIVERSITY</aff>
                                                            </contrib>
                                                                                </contrib-group>
                        
                                        <pub-date pub-type="pub" iso-8601-date="20190730">
                    <day>07</day>
                    <month>30</month>
                    <year>2019</year>
                </pub-date>
                                        <volume>7</volume>
                                        <issue>3</issue>
                                        <fpage>332</fpage>
                                        <lpage>336</lpage>
                        
                        <history>
                                    <date date-type="received" iso-8601-date="20181226">
                        <day>12</day>
                        <month>26</month>
                        <year>2018</year>
                    </date>
                                                    <date date-type="accepted" iso-8601-date="20190706">
                        <day>07</day>
                        <month>06</month>
                        <year>2019</year>
                    </date>
                            </history>
                                        <permissions>
                    <copyright-statement>Copyright © 2013, Balkan Journal of Electrical and Computer Engineering</copyright-statement>
                    <copyright-year>2013</copyright-year>
                    <copyright-holder>Balkan Journal of Electrical and Computer Engineering</copyright-holder>
                </permissions>
            
                                                                                                <abstract><p>The most important featureof active rectifier circuits is the ability to adjust the power factor and DCbus voltage, when compared to diode rectifiers. However, odd current harmonicsoccur in the grid since hard switching state occurs in the active rectifiercircuit. A filter should be used on the grid side to reduce the currentharmonics. Although there are many types of filters, one of the most suitablefilter types is LCL filter when considering the factors such as cost and size.In this study, LCL filter design calculation is performed and PSIM simulationresults of active-reactive power controlled LCL filter proportional resonant(PR) current controlled single phase active rectifier circuit is given. Thesystem is designed according to the active power of 600 W. Then, by adding reactivepower to the system, it is proved that the power control is carried outsuccessfully.</p></abstract>
                                                                                    
            
                                                            <kwd-group>
                                                    <kwd>LCL filter</kwd>
                                                    <kwd>  Power control</kwd>
                                                    <kwd>  PR current controller</kwd>
                                                    <kwd>  Single phase active rectifier</kwd>
                                            </kwd-group>
                                                        
                                                                                                                                                    </article-meta>
    </front>
    <back>
                            <ref-list>
                                    <ref id="ref1">
                        <label>1</label>
                        <mixed-citation publication-type="journal">[1]	W. Song, S. Wang, C. Xiong, X. Ge, X. Feng, “Single-phase three-level space vector pulse width modulation algorithm for grid-side railway traction converter and its relationship of carrier-based pulse width modulation”, IET Electrical Systems in Transportation, Vol.4, No.3, 2014, pp.78-87.</mixed-citation>
                    </ref>
                                    <ref id="ref2">
                        <label>2</label>
                        <mixed-citation publication-type="journal">[2]	V. Blahnik, J. Talla, “Single-phase synchronization for traction active rectifier”, IEEE Conference on Applied Electronics, 2016, pp.23-26. [3]	H. Komurcigil, N. Altin, S. Ozdemir, I. Sefa, “An extended Lyapunov-Function-Based control strategy for single-phase UPS inverters”, IEEE Transactions on Power Electronics, Vol.30, No.7, 2015, pp.3976-3983.</mixed-citation>
                    </ref>
                                    <ref id="ref3">
                        <label>3</label>
                        <mixed-citation publication-type="journal">[4]	L. Pan, C. Zhang, “Model predictive control of a single-phase PWM rectifier for electric vehicle charger”, Energy Procedia, Vol.105, 2017, pp.4027-4033.</mixed-citation>
                    </ref>
                                    <ref id="ref4">
                        <label>4</label>
                        <mixed-citation publication-type="journal">[5]	D. A. Khaburi, A. Nazempour, “Design and simulation of a PWM rectifier connected to a PM generator of micro turbine unit”, Scientia Iranica, Vol.19, No.3, 2012, pp.820-828.</mixed-citation>
                    </ref>
                                    <ref id="ref5">
                        <label>5</label>
                        <mixed-citation publication-type="journal">[6]	A. Mirecki, X. Roboam, F. Richardeau, “Architecture complexity and energy efficiency of a small wind turbines”, IEEE Transactions on Industrial Electronics, Vol.54, No.1, 2007, pp.660-670.</mixed-citation>
                    </ref>
                                    <ref id="ref6">
                        <label>6</label>
                        <mixed-citation publication-type="journal">[7]	W. Jiang, Y. Wang, J. Wang, L. Wang, H. Huang, “Maximizing instantaneous active power capability for PWM rectifier under unbalanced grid voltage dips considering the limitation of phase current”, IEEE Transactions on Industrial Electronics, Vol.63, No.10, 2016, pp.5998-6009.</mixed-citation>
                    </ref>
                                    <ref id="ref7">
                        <label>7</label>
                        <mixed-citation publication-type="journal">[8]	M. Liserre, F. Blaabjerg, S. Hansen, “Design and control of an LCL-filter-based three-phase active rectifier”, IEEE Transactions on Industry Applications, Vol.41, No.5, 2005, pp.1281-1291.</mixed-citation>
                    </ref>
                                    <ref id="ref8">
                        <label>8</label>
                        <mixed-citation publication-type="journal">[9]	M. Orellana, R. Grino, “Power flow limitations for LCL grid-connected power converters”, IEEE 11th International Multi-Conference on Systems, Signals &amp; Devices (SSD), 2014, pp.1-5.</mixed-citation>
                    </ref>
                                    <ref id="ref9">
                        <label>9</label>
                        <mixed-citation publication-type="journal">[10]	L. Wei, R. A. Lukaszewski, “Optimization of the main inductor in a LCL filter for three phase active rectifier”, in Proc. Conf. Rec. IEEE Ind. Appl. Conf., 42nd IAS Annu. Meeting, 2007, pp.1816-1822.</mixed-citation>
                    </ref>
                                    <ref id="ref10">
                        <label>10</label>
                        <mixed-citation publication-type="journal">[11]	S. Kwak, J. C. Park, “Model-predictive direct power control with vector preselection technique for highly efficient active rectifiers”, IEEE Transactions on Industrial Informatics, Vol.11, No.1, 2015, pp.44-52.</mixed-citation>
                    </ref>
                                    <ref id="ref11">
                        <label>11</label>
                        <mixed-citation publication-type="journal">[12]	W. Song, Z. Deng, S. Wang, X. Feng, “A simple model predictive power control strategy for single-phase PWM converters with modulation function optimization”, IEEE Transactions on Power Electronics, Vol.31, No.7, 2016, pp.5279-5289.</mixed-citation>
                    </ref>
                                    <ref id="ref12">
                        <label>12</label>
                        <mixed-citation publication-type="journal">[13]	L. Dalessandro, U. Drofenik, S. D. Round, J. W. Kolar, “A novel hysteresis current control for three-phase three-level PWM rectifiers”, IEEE Twentieth Annual Applied Power Electronics Conference and Exposition (APEC), Vol.1, 2005, pp.501-507.</mixed-citation>
                    </ref>
                                    <ref id="ref13">
                        <label>13</label>
                        <mixed-citation publication-type="journal">[14]	M. Malinowski, M. Jasinski, M. P. Kazmierkowski, “Simple direct power control of three-phase PWM rectifier using space-vector modulation (DPC-SVM)”, IEEE Transactions on Industrial Electronics, Vol.51, No.2, 2004, pp.447-454.</mixed-citation>
                    </ref>
                                    <ref id="ref14">
                        <label>14</label>
                        <mixed-citation publication-type="journal">[15]	D. N. Zmood, D. G. Holmes, “Stationary frame current regulation of PWM inverters with zero steady-state error”, IEEE Transactions on Power Electronics, Vol.18, No.3, 2003, pp.814-822.</mixed-citation>
                    </ref>
                                    <ref id="ref15">
                        <label>15</label>
                        <mixed-citation publication-type="journal">[16]	X. Wang, Z. Pan, T. T. G. Hoang, L. Tian, Y. Chen, “New repetitive current controller for PWM rectifier”, IFAC-PapersOnLine, Vol.51, No.4, 2018, pp.154-159.</mixed-citation>
                    </ref>
                                    <ref id="ref16">
                        <label>16</label>
                        <mixed-citation publication-type="journal">[17]	H. Özbay, S. Öncü, M. Kesler “SMC-DPC based active and reactive power control of grid-tied three phase inverter for PV systems”, International Journal of Hydrogen Energy, Vol.42, No.28, 2017, pp.17713-17722.</mixed-citation>
                    </ref>
                                    <ref id="ref17">
                        <label>17</label>
                        <mixed-citation publication-type="journal">[18]	R. Coteli, H. Acikgoz, F. Ucar, B. Dandil, “Design and implementation of type-2 fuzzy neural system controller for PWM rectifiers”, International Journal of Hydrogen Energy, Vol.42, No.32, 2017, pp.20759-20771.</mixed-citation>
                    </ref>
                                    <ref id="ref18">
                        <label>18</label>
                        <mixed-citation publication-type="journal">[19]	M. L. Sowjanya, “Improved control strategy of grid interactive inverter system with LCL filter using active and passive damping methods”, M. Sc. Thesis, Department of Electrical Engineering National Institute of Technology, Rourkela, India, 2014.</mixed-citation>
                    </ref>
                                    <ref id="ref19">
                        <label>19</label>
                        <mixed-citation publication-type="journal">[20]	Y. Yang, F. Blaabjerg, “Synchronization in single-phase grid-connected photovoltaic systems under grid faults”, IEEE 3rd International Symposium on Power Electronics for Distributed Generation Systems (PEDG), 2012, pp.476-482.</mixed-citation>
                    </ref>
                                    <ref id="ref20">
                        <label>20</label>
                        <mixed-citation publication-type="journal">[21]	J. F. Ardashir, M. Sabahi, S. H. Hosseini, F. Blaabjerg, E. Babaei, G. B. Gharehpetian, “A single-phase transformerless inverter with charge pump circuit concept for grid-tied PV applications”, IEEE Transactions on Industrial Electronics, Vol.64, No.7, 2017, pp.5403-5415.</mixed-citation>
                    </ref>
                                    <ref id="ref21">
                        <label>21</label>
                        <mixed-citation publication-type="journal">[22]	A. Reznik, M. G. Simoes, A. Al-Durra, S. M. Muyeen, “LCL filter design and performance analysis for grid-interconnected systems”, IEEE Transactions on Industry Applications, Vol.50, No.2, 2014, pp.1225-1232.</mixed-citation>
                    </ref>
                                    <ref id="ref22">
                        <label>22</label>
                        <mixed-citation publication-type="journal">[23]	M. C. Kisacikoglu, M. Kesler, L. M. Tolbert, “Single-phase on-board bidirectional PEV charger for V2G reactive power operation”, IEEE Transactions on Smart Grid, Vol.6, No.2, 2015, pp.767-775.</mixed-citation>
                    </ref>
                                    <ref id="ref23">
                        <label>23</label>
                        <mixed-citation publication-type="journal">[24]	H. Athari, M. Niroomand, M. Ataei, “Review and classification of control systems in grid-tied inverters”, Renewable and Sustainable Energy Reviews, Vol.72, 2017, pp.1167-1176.</mixed-citation>
                    </ref>
                                    <ref id="ref24">
                        <label>24</label>
                        <mixed-citation publication-type="journal">[25]	D. Zammit, C. S. Staines, M. Apap, J. Licari, “Design of PR current control with selective harmonic compensators using Matlab”, Journal of Electrical Systems and Information Technology, Vol.4, No.3, 2017, pp.347-358.</mixed-citation>
                    </ref>
                                    <ref id="ref25">
                        <label>25</label>
                        <mixed-citation publication-type="journal">[26]	H. Komurcigil, N. Altin, S. Ozdemir, I. Sefa, “Lyapunov-function and proportional-resonant-based control strategy for single-phase grid-connected VSI with LCL filter”, IEEE Transactions on Industrial Electronics, Vol.63, No.5, pp.2838-2849.</mixed-citation>
                    </ref>
                            </ref-list>
                    </back>
    </article>
