Power electronics ieee 2012 2013


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Power electronics ieee 2012 2013

  1. 1. ECWAY TECHNOLOGIES IEEE PROJECTS & SOFTWARE DEVELOPMENTS OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE BANGALORE / HYDRABAD CELL: +91 98949 17187, +91 875487 1111 / 2111 / 3111 / 4111 / 5111 / 6111 / 8111 POWER ELECTRONICS PROJECTS Visit: www.ecwayprojects.com Mail to: ecwaytechnologies@gmail.com S.NO 1. TITLES FOR THE PROJECT 4. A Comparative Study of a New ZCS DC–DC Full-Bridge Boost converter With a ZVS Active-Clamp Converter A Global Maximum Power Point Tracking Scheme Employing DIRECT Search Algorithm for Photovoltaic Systems A Maximum Power Point Tracker for Long-Term Logging of PV Module Performance A Medium-Voltage Motor Drive With a Modular Multilevel PWM Inverter 5. A Modified Single-Phase Quasi-Z-Source AC–AC Converter 6. A New High-Efficiency Single-Phase Transformer less PV Inverter Topology 7. A New MPPT Method for Low-Power Solar Energy Harvesting 8. 12. A New Single-Phase Single-Stage Three-Level Power Factor Correction AC–DC Converter A Novel DC-Side Zero-Voltage Switching (ZVS) Three-Phase Boost PWM Rectifier Controlled by an Improved SVM Method A Novel Method for Connecting Multiple Piezoelectric Transformer Converters and its Circuit Application A Novel PV Micro inverter With Coupled Inductors and Double-Boost Topology A Novel Single-Phase Five-Level Inverter With Coupled Inductors 13. A Novel Three-Phase Three-Leg AC/AC Converter Using Nine IGBTs 14. A Novel Valley-Fill SEPIC-derived Power Supply Without Electrolytic Capacitors for LED Lighting Application A Novel ZVZCS Full-Bridge DC/DC Converter Used for Electric Vehicles 2. 3. 9. 10. 11. 15. 16. 17. 18. 19. A Safety Enhanced, High Step-Up DC–DC Converter for AC Photovoltaic Module Application A Soft Switching Three-phase Current-fed Bidirectional DC-DC Converter With High Efficiency Over a Wide Input Voltage Range A State-Space Modelling Approach for the FPGA-Based Real-Time Simulation of High Switching Frequency Power Converters A Switched-Capacitor Inverter Using Series/Parallel Conversion With Inductive Load
  2. 2. POWER ELECTRONICS PROJECTS 20. A Switched-Capacitor Voltage Tripler With Automatic Interleaving Capability 21. A Three-port Flyback for PV Microinverter Applications With Power Pulsation Decoupling Capability A Transformer-Less High-Power Converter for Large Permanent Magnet Wind Generator Systems A Unified Approach to Reliability Assessment of Multiphase DC–DC Converters in Photovoltaic Energy Conversion Systems A Weighted-Efficiency-Oriented Design Methodology of Flyback Inverter for AC Photovoltaic Modules A ZVS Grid-Connected Three-Phase Inverter A ZVS Interleaved Boost AC/DC Converter Used in Plug-in Electric Vehicles 22. 23. 24. 25. 26. 27. 28. 29. 30. 31. 32. 33. 34. 35. 36. 37. Adaptive Current Source Drivers for Efficiency Optimization of High-Frequency Synchronous Buck Converters Adaptive Fuzzy-Neural-Network Design for Voltage Tracking Control of a DC DC Boost Converter An Analog Technique for Distributed MPPT PV Applications An Improved Maximum Power Point Tracking for Photovoltaic Grid-Connected Inverter Based on Voltage-Oriented Control An Improved Particle Swarm Optimization (PSO)–Based MPPT for PV With Reduced Steady-State Oscillation An Integrated Boost Resonant Converter for Photovoltaic Applications An Interleaved Boost Converter With Zero-Voltage Transition An Optimized Transformer less Photovoltaic Grid-Connected Inverter Analysis and Design of a High Step-up Current-Fed Multi resonant DC–DC converter With Low Circulating Energy and Zero-Current Switching for All Active Switches Analysis and Design of a Push-Pull Quasi-Resonant Boost Power Factor Corrector Analysis and Implementation of an HPF Electronic Ballast for HID Lamps With LFSW Voltage
  3. 3. POWER ELECTRONICS PROJECTS 38. Analysis of PWM Z-Source DC-DC Converter in CCM for Steady State 39. Analysis, Design and Implementation of a Soft Switching Converter with Two Three-Level PWM Circuits Review of Non isolated High-Step-Up DC/DC Converters in Photovoltaic GridConnected Applications 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. 50. 51. 52. 53. Capacitor Voltage Balancing of Flying Capacitor Multilevel Converters by Space Vector PWM Cascade Cockcroft-Walton Voltage Multiplier Applied to Transformer less High Step-Up DC-DC Converter Control of Improved Full-Bridge Three-Level DC/DC Converter for Wind Turbines in DC Grid Control Structure for Single Phase Stand-Alone Wind Based Energy Sources Current Phase Surveillance in Resonant Converters for Electric Discharge Applications to Assure Operation in Zero-Voltage-Switching Mode DC Load and Batteries Control Limitations for Photovoltaic Systems. Experimental Validation DC/DC Converter Design for Super capacitor and Battery Power Management in Hybrid Vehicle Applications—Polynomial Control Strategy Derivation, Analysis, and Implementation of a Boost–Buck Converter-Based HighEfficiency PV Inverter Design and Application for PV Generation System Using a Soft-Switching Boost Converter With SARC Design and Implementation of a ZCS-PWM Half-Bridge Boost Rectifier With Output Voltage Balance Control Design Methodology for a Very High Frequency Resonant Boost Converter Design of Neutral-Point Voltage Controller of a Three-level NPC Inverter with Small DC-Link Capacitors Direct Connection of Super capacitors to Photovoltaic Panels With On–Off Maximum Power Point Tracking
  4. 4. POWER ELECTRONICS PROJECTS 54. 55. 56. 57. 58. 59. 60. 61. 62. 63. Distributed Control of a Fault Tolerant Modular Multilevel Inverter for DirectDrive Wind Turbine Grid Interfacing Dynamic Modelling and Controller Design for a Single-Stage Single-Switch Parallel Boost-Fly back–Fly back Converter Dynamic Properties of Current-Fed Quadratic Full-Bridge Buck Converter for Distributed Photovoltaic MPP-Tracking Systems Feed-Forward Compensator of Operating Frequency for APWM HB Fly back Converter Frequency Response Analysis of Current Controllers for Selective Harmonic Compensation in Active Power Filters Grid-Connected Boost-Half-Bridge Photovoltaic Micro inverter System Using Repetitive Current Control and Maximum Power Point Tracking High Step-up Boost Converter Integrated With a TransformerAssisted Auxiliary Circuit Employing Quasi-Resonant Operation Multilevel Current Waveform Generation Using Inductor Cells and H-Bridge Current-Source Inverter Newly-Constructed Simplified Single-Phase Multistring Multilevel Inverter Topology for Distributed Energy Resources No dissipative String Current Diverter for Solving the Cascaded DC–DC Converter Connection Problem in Photovoltaic Power Generation System 64. High-Efficiency and Low-Cost Tightly Regulated Dual-Output LLC Resonant Converter 65. High-Efficiency MOSFET Inverter with H6-Type Configuration for Photovoltaic Non isolated AC-Module Applications 66. Highly Efficient Analog Maximum Power Point Tracking(AMPPT) in a Photovoltaic System High-Performance Control of a DC–DC Z-Source Converter Used for an Excitation Field Driver High-Power Bidirectional DC–DC Converter for Aerospace Applications 67. 68. 69. 70. High-Step-Up and High-Efficiency Fuel-Cell Power-Generation System With Active-Clamp Flyback–Forward Converter Hybrid-Frequency Modulation for PWM Integrated Resonant Converters
  5. 5. POWER ELECTRONICS PROJECTS 71. Improved Transformer less Inverter With Common-Mode Leakage Current Elimination for a Photovoltaic Grid-Connected Power System 72. 73. Interleaved High Step-Up Converter With Winding-Cross-Coupled Inductors and Voltage Multiplier Cells Inverse Watkins–Johnson Topology-Based Inverter 74. Isolated Buck–Boost DC/DC Converters Suitable for Wide Input-Voltage Range 75. 76. Limits of Advisability for Master–Slave Configuration of DC–AC Converters in Photovoltaic Systems Low-Cost Semi-Z-source Inverter for Single-Phase Photovoltaic Systems 77. LVRT Scheme of PMSG Wind Power Systems Based on Feedback Linearization 78. Maximum Power Point Tracking for Photovoltaic Optimization Using RippleBased Extremum Seeking Control Modeling and Control of a New Three-Input DC–DC Boost Converter for Hybrid PV/FC/Battery Power System Modulation Technique to Reverse Power Flow for the Isolated Series Resonant DC–DC Converter With Clamped Capacitor Voltage 79. 80.