Power Electronics Ieee Projects for M.E 2015 2016 | Power Electronics Ieee Projects Titles for M.E 2015 2016

Download Power Electronics Ieee Projects for M.E 2015 2016 | Power Electronics Ieee Projects Titles for M.E 2015 2016

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LeMeniz Infotech a Leading Software Concern. power electronics ieee projects for m.e 2015-2016, power electronics Ieee Project Titles for m.e 2015 2016 We guide final year projects for M.E/M.Tech, B.E/B.Tech, MPhil, MCA, BCA, M.Sc, B.Sc, and Diploma students for their Academic Projects to get best results. We do Projects in Latest Technology like java, dot net, android, hadoop, embedded, matlab, power electronics, power system.Web : http://www.lemenizinfotech.com/power-electronics-ieee-projects-2015-2016/Web : http://ieeemaster.com/power-electronics-ieee-projects-2015-2016/Web :http://ieeeprojectspondicherry.weebly.com/Web :http://www.ieeeprojectsinpondicherry.blogspot.in/Youtube :https://www.youtube.com/watch?v=eesBNUnKvwsContact : 9566355386/9962588976

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<ul><li><p>Power Electronics IEEE PROJECT TITLES 2015 </p><p>LeMeniz Infotech </p><p>36, 100 feet Road, Natesan Nagar(Near Indira Gandhi Statue and Next to Fish-O-Fish), </p><p>Pondicherry-605 005 </p><p>Web : www.ieeemaster.com / www.lemenizinfotech.com </p><p>Mail : info@lemenizinfotech.com / projects@lemenizinfotech.com </p><p>Phone : 9566355386 / 9962588976 </p><p>S.NO Power Electronics Projects for M.E / M.Tech </p><p>1 Hybrid Transformer ZVS/ZCS DCDC Converter With Optimized Magnetics and Improved Power Devices Utilization for Photovoltaic Module Applications </p><p>2 A Novel High Step-up DC/DC Converter Based on Integrating Coupled Inductor and Switched-Capacitor Techniques for Renewable Energy Applications </p><p>3 A Bidirectional LLC Resonant Converter With Automatic Forward and Backward Mode Transition </p><p>4 Discontinuous Modulation Scheme for a Differential-Mode Cuk Inverter </p><p>5 Bridgeless PFC-Modified SEPIC Rectifier With Extended Gain for Universal Input Voltage Applications </p><p>6 Transformerless Hybrid Power Filter Based on a Six-Switch Two-Leg Inverter for Improved Harmonic Compensation Performance </p><p>7 Resonance Analysis and Soft-Switching Design of Isolated Boost Converter With Coupled Inductors for Vehicle Inverter Application </p><p>8 Naturally Clamped Zero-Current Commutated Soft-Switching Current-Fed PushPull DC/DC Converter: Analysis, Design, and Experimental Results </p><p>9 PFC Cuk Converter-Fed BLDC Motor Drive </p><p>10 A Single-Phase Cascaded Multilevel Inverter Based on a New Basic Unit With Reduced Number of Power Switches </p><p>11 A High-Efficiency MOSFET Transformerless Inverter for Nonisolated Micro </p><p>inverter Applications </p><p>12 Three-Port DCDC Converter for Stand-Alone Photovoltaic Systems </p><p>13 Boost-Derived Hybrid Converter With Simultaneous DC and AC Outputs </p><p>14 Modeling and Controller Design of a Semiisolated </p></li><li><p>Multiinput Converter for a Hybrid PV/Wind Power Charger System </p><p>15 The Transformerless Single-Phase Universal Active Power Filter for Harmonic and Reactive Power Compensation </p><p>16 A Zero-Voltage-Transition Bidirectional DC/DC Converter </p><p>17 A New Resonant Bidirectional DCDC Converter Topology </p><p>18 An Adjustable-Speed PFC Bridgeless BuckBoost Converter-Fed BLDC Motor Drive </p><p>19 Multicell Switched-Inductor/Switched-Capacitor Combined Active-Network Converters </p><p>20 A Four-Switch Three-Phase SEPIC Based Inverter </p><p>21 A Three-Level Quasi-Two-Stage Single-Phase PFC Converter with Flexible Output Voltage and Improved Conversion Efficiency </p><p>22 A Family of Multiport BuckBoost Converters Based on DC-Link-Inductors (DLIs) </p><p>23 A Grid-Connected Dual Voltage Source Inverter With Power Quality Improvement Features </p><p>24 Transformerless Hybrid Power Filter Based on a Six-Switch Two-Leg Inverter for Improved Harmonic Compensation Performance </p><p>25 High Step-Up Converter With Three-Winding Coupled Inductor for Fuel Cell Energy Source Applications </p><p>26 A Multilevel Energy Buffer and Voltage Modulator for Grid-Interfaced Micro Inverters </p><p>27 Analytical Model of the Half-Bridge Series Resonant Inverter for Improved Power Conversion Efficiency and Performance </p><p>28 An Adaptive ZVS Full-Bridge DCDC Converter With Reduced Conduction Losses and Frequency Variation Range </p><p>29 Analysis of the Interleaved Isolated Boost Converter With Coupled Inductors </p><p>30 A Voltage-Controlled DSTATCOM for Power-Quality Improvement </p></li></ul>