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  1. 1. 28,South Usman Road,, TNagar, Chennai-17. Ph : 044-43855940 Mobile : +91-8680802110 Web : email : POWER ELECTRONICS S.NO. TITLES 1. A Comparison Of Soft-Switched DC-To-DC Converters For Electrolyzer Application 2. A Controlled-Type ZVS Technique without Auxiliary Components For The Low Power DC/AC Inverter 3. A DC–DC Converter Based On The Three-State Switching Cell For High Current And Voltage Step-Down Applications 4. A Family Of Single-Stage Switched-Capacitor–Inductor PWM Converters 5. A Family Of Three-Switch Three-State Single-Phase Z-Source Inverters 6. A Flicker-Free Electrolytic Capacitor-Less AC–DC LED Driver 7. A High Step-Down Transformer less Single-Stage Single-Switch AC/DC Converter 8. A High Step-Up Converter With A Voltage Multiplier module For A Photovoltaic System 9. A High Step-Up Three-Port DC–DC Converter For Stand-Alone PV/Battery Power Systems 10. A High-Efficiency Positive Buck–Boost Converter With Mode-Select Circuit And Feed-Forward Techniques 11. A Motor-Friendly Quasi-Resonant DC-Link With Lossless Variable ZeroVoltage Duration 12. A New Asymmetrical Half-Bridge Converter With Zero DC-Offset Current In Transformer 13. A Nonlinear State Machine For Dead Zone Avoidance And Mitigation In A Synchronous No Inverting Buck–Boost Converter 14. A Novel Quick Response Of RBCOT With VIC Ripple For Buck Converter 15. A Novel RPV (Reactive-Power-Variation) Antiislanding Method Based On Adapted Reactive Power Perturbation 16. A Three-Level Converter With Reduced Filter Size Using Two Transformers And Flying Capacitors 17. Adaptive Step Size With Adaptive-Perturbation-Frequency Digital MPPT Controller For A Single-Sensor Photovoltaic Solar System 18. Advanced Symmetrical Voltage Quadrupler Rectifiers For High Step-Up And High Output-Voltage Converters 19. An Improved Buck PFC Converter With High Power Factor 20. An Improved Soft-Switching Buck Converter With Coupled Inductor Further more details visit: send your request to : CODE PE1 PE2 PE3 PE4 PE5 PE6 PE7 PE8 PE9 PE10 PE11 PE12 PE13 PE14 PE15 PE16 PE17 PE18 PE19 PE20
  2. 2. 28,South Usman Road,, TNagar, Chennai-17. Ph : 044-43855940 Mobile : +91-8680802110 Web : email : 21. 22. 23. 24. 25. 26. 27. 28. 29. 31. 32. 33. 34. 35. 36. 37. 38. 39. 40. 41. 42. 43. An Improved Three-Phase Variable-Band Hysteresis Current Regulator Analysis Of An Interleaved Three-Level ZVS Converter With SeriesConnected Transformers Bifilar Winding Of A Center-Tapped Transformer Including Integrated Resonant Inductance For LLC Resonant Converters CCTT-Core Split-Winding Integrated Magnetic For High-Power DC–DC Converters Control Scheme With Voltage Support Capability Fordistributed Generation Inverters Under Voltage Sags Control Strategy For Input-Series-Output-Series High-Frequency AC-Link Inverters Design And Performance Evaluation Of A 200 ?C Interleaved Boost Converter Design Of A Semi active Battery-Ultra capacitor Hybrid Energy Source Dual Half-Bridge DC–DC Converter With Wide-Range ZVS And Zero Circulating Current Dynamic Modeling And Controller Design For A Single-Stage Single-Switch Parallel Boost-Fly back–Fly back Converter Effect Of Control Method On Impedance-Based Interactions In A Buck Converter Efficiency-Oriented Optimal Design Of The LLC Resonant Converter Based On Peak Gain Placement Flatness-Based Control Of Three-Phase Inverter With Output LC Filter High-Efficiency And Low-Cost Tightly Regulated Dual-Output LLC Resonant Converter High-Efficiency Isolated Bidirectional AC–DC Converter For A DC Distribution System High-Efficiency LED Driver Without Electrolytic Capacitor For Street Lighting Hybrid-Frequency Modulation For PWM-Integrated Resonant Converters Improved Pulse-Width Modulation Strategies For Diode-Assisted Buck–Boost Voltage Source Inverter Integration And Operation Of A Single-Phase Bidirectional Inverter With Two Buck/Boost Mppts For DC-Distribution Applications Interleaved Boost Converter With Ripple Cancellation Network Isolated Three-Phase High Power Factor Rectifier Based On The SEPIC Converter Operating In Discontinuous Conduction Mode Light-Load Efficiency Improvement In Buck-Derived Single-Stage Single- Further more details visit: send your request to : PE21 PE22 PE23 PE24 PE25 PE26 PE27 PE28 PE29 PE30 PE31 PE32 PE33 PE34 PE35 PE36 PE37 PE38 PE39 PE40 PE41 PE42
  3. 3. 28,South Usman Road,, TNagar, Chennai-17. Ph : 044-43855940 Mobile : +91-8680802110 Web : email : 44. 45. 46. 47. 48. 49. 50. 51. 52. 53. 54. 55. 56. 57. 58. 59. 60. 61. 62. 63. Switch PFC Converters Mitigation Of Lower Order Harmonics In A Grid-Connected Single-Phase PV Inverter Modeling And Simulation Of All-Electric Ships With Low-Voltage DC Hybrid Power Systems Modified Fly back For HID Lamp Supply: Design, Modeling, And Control New Digital-Controlled Technique For Battery Charger With Constant Current And Voltage Control Without Current Feedback New Random PWM Technique For A Full-Bridge DC/DC Converter With Harmonics Intensity Reduction And Considering Efficiency Parameter Design Of Damping Networks For The Super buck Converter Secondary-Side Phase-Shift-Controlled ZVS DC/DC Converter With Wide Voltage Gain For High Input Voltage Applications Self-Sustained Oscillating Control Technique For Current-Driven Full-Bridge DC/DC Converter Simplified Averaged Models Of DC–DC Power Converters Suitable For Controller Design And Micro grid Simulation Soft-Switched Dual-Input DC–DC Converter Combining A Boost-Half-Bridge cell And A Voltage-Fed Full-Bridge Cell Soft-Switching Bidirectional DC/DC Converter With A LC Series Resonant Circuit Soft-Switching DC/DC Converter With A Full ZVS Range And Reduced Output Filter for High-Voltage Applications State-Plane Analysis Of Regenerative Snubber For Fly back Converters Zero-Voltage-Switching PWM Resonant Full-Bridge Converter With Minimized Circulating Losses And Minimal Voltage Stresses Of Bridge Rectifiers For Electric Vehicle Battery Chargers A Multiple-Input Multiple-Output DC–DC Converter A Novel Flyback-Based Input PFC Stage for Electronic Ballasts in Lighting Applications Analysis and Design of a New AC–DC Single-Stage Full-Bridge PWM Converter With Two Controllers Analysis and PWM Control of Switched Boost Inverter Composite Nonlinear Feedback Control and Stability Analysis of a GridConnected Voltage Source Inverter With LCL Filter Control Design for Multiphase Synchronous Buck Converters Based on Exact Further more details visit: send your request to : PE43 PE44 PE45 PE46 PE47 PE48 PE49 PE50 PE51 PE52 PE53 PE54 PE55 PE56 PE57 PE58 PE59 PE60 PE61 PE62
  4. 4. 28,South Usman Road,, TNagar, Chennai-17. Ph : 044-43855940 Mobile : +91-8680802110 Web : email : 64. 65. 66. 67. 68 69. 70. 71. Constant Resistive Output Impedance Control Scheme for Reduced Cross-Regulation in Single-Inductor MultipleOutput DC–DC Converters Digital Adaptive Frequency Modulation for Bidirectional DC–DC Converter Extended Range ZVS Active-Clamped Current-Fed Full-Bridge Isolated DC/DC Converter for Fuel Cell Applications: 400 V/1000 kVA Hybrid Automatic Transfer Switch Modeling and Control Design of the Interleave Double Dual Boost Converter Novel Techniques to Suppress the Common-Mode EMI Noise Caused by Transformer Parasitic Capacitances in DC–DC Converters Pulse-Train-Controlled CCM Buck Converter With Small ESR OutputCapacitor Single- and Three-Phase PHEV Onboard Battery Charger Using Small Link Capacitor Further more details visit: send your request to : PE63 PE64 PE65 PE66 PE67 PE68 PE69 PE70