CODE | PROJECT NAME | TITLE | DOWNLOAD |
---|---|---|---|
IITPE-01 | A Modified Single-Phase Transformerless Y-Source PV Grid-Connected Inverter | SOLAR ENERGY SYSTEM | Abstract |
IITPE-02 | An Improved H5 Topology with Low Common-mode Current for Transformerless PV Grid-connected Inverter | SOLAR ENERGY SYSTEM | Abstract |
IITPE-03 | A Grid-Connected Single-Phase Transformerless Inverter Controlling Two Solar PV Arrays Operating Under Different Atmospheric Conditions | SOLAR ENERGY SYSTEM | Abstract |
IITPE-04 | A Buck and Boost Based Grid Connected PV Inverter Maximizing Power Yield From Two PV Arrays in Mismatched Environmental Conditions | SOLAR ENERGY SYSTEM | Abstract |
IITPE-05 | Design and implementation of single-phase inverter without transformer for PV applications | SOLAR ENERGY SYSTEM | Abstract |
IITPE-06 | A Transformer less Single-Phase Symmetrical Z Source HERIC Inverter with Reduced Leakage Currents for PV Systems | SOLAR ENERGY SYSTEM | Abstract |
IITPE-07 | A Distributed Power Control of Series-Connected Module-Integrated Inverters for PV Grid-Tied Applications | SOLAR ENERGY SYSTEM | Abstract |
IITPE-08 | An Improved Hybrid Modulation Method for the Single-Phase H6 Inverter With Reactive Power Compensation | SOLAR ENERGY SYSTEM | Abstract |
IITPE-09 | A Three-Phase Grid-Connected Microinverter for AC Photovoltaic Module Applications | SOLAR ENERGY SYSTEM | Abstract |
IITPE-10 | H8 Inverter to Reduce Leakage Current in Transformer less Three-Phase Grid-Connected Photovoltaic systems | SOLAR ENERGY SYSTEM | Abstract |
IITPE-11 | Modified Single-Phase Single-Stage Grid-Tied Flying Inductor Inverter With MPPT and Suppressed Leakage Current | SOLAR ENERGY SYSTEM | Abstract |
IITPE-12 | High-Efficiency Two-Stage Three-Level Grid-Connected Photovoltaic Inverter | SOLAR ENERGY SYSTEM | Abstract |
IITPE-13 | Three-Phase Quasi-Z-Source Inverter With Constant Common-Mode Voltage for Photovoltaic Application | SOLAR ENERGY SYSTEM | Abstract |
IITPE-14 | Integrated DC–DC Converter Based Grid-Connected Transformerless Photovoltaic Inverter With Extended Input Voltage Range | SOLAR ENERGY SYSTEM | Abstract |
IITPE-15 | Implementation of a Grid-Integrated PV-Battery System for Residential and Electrical Vehicle Applications | SOLAR ENERGY SYSTEM | Abstract |
IITPE-16 | Design and Implementation of Active Power Control With Improved P&O Method for Wind-PV-Battery-Based Standalone Generation System | SOLAR ENERGY SYSTEM | Abstract |
IITPE-17 | Proposal of a Photovoltaic AC-Module With a Single Stage Transformerless Grid-Connected Boost Microinverter | SOLAR ENERGY SYSTEM | Abstract |
IITPE-18 | Leakage Current Suppression of Three-Phase Flying Capacitor PV Inverter With New Carrier Modulation and Logic Function | SOLAR ENERGY SYSTEM | Abstract |
IITPE-19 | Control and operation of a solar. PV-battery-grid-tied system in fixed and variable power mode | SOLAR ENERGY SYSTEM | Abstract |
IITPE-20 | Real-time implementation of optimal operation of single-stage grid interfaced-PV-system under weak grid conditions | SOLAR ENERGY SYSTEM | Abstract |
IITPE-21 | Power management in PV-battery-hydro based standalone microgrid | SOLAR ENERGY SYSTEM | Abstract |
IITPE-22 | Multifunctional Three-Phase Four-Leg PV-SVSI With Dynamic Capacity Distribution Method | SOLAR ENERGY SYSTEM | Abstract |
IITPE-23 | PV Battery Charger Using an L3C Resonant Converter for Electric Vehicle Applications | SOLAR ENERGY SYSTEM | Abstract |
IITPE-24 | MPPT Method for PV Systems Under Partially Shaded Conditions by Approximating I–V Curve | SOLAR ENERGY SYSTEM | Abstract |
IITPE-25 | A Single-Phase Asymmetrical T-Type Five-Level Transformerless PV Inverter | SOLAR ENERGY SYSTEM | Abstract |
CODE | PROJECT NAME | TITLE | DOWNLOAD |
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IITPE-01 | A Hybrid Resonant ZVZCS Three-Level Converter for MVDC-Connected Offshore Wind Power Collection Systems | WIND ENERGY SYSTEM | Abstract |
IITPE-02 | Hybrid ANFIS-GA-based control scheme for performance enhancement of a grid-connected wind generator | WIND ENERGY SYSTEM | Abstract |
IITPE-03 | Low Dissipative Snubber Using Flyback-Type Transformer for Wind Turbine Systems | WIND ENERGY SYSTEM | Abstract |
IITPE-04 | Power electronic interface with de-coupled control for wind-driven PMSG feeding utility grid and DC load | WIND ENERGY SYSTEM | Abstract |
IITPE-05 | Reliability Improvement for a High-Power IGBT in Wind Energy Applications | WIND ENERGY SYSTEM | Abstract |
IITPE-06 | Reducing Harmonic Instability and Resonance Problems in PMSG-Based Wind Farms | WIND ENERGY SYSTEM | Abstract |
CODE | PROJECT NAME | TITLE | DOWNLOAD |
---|---|---|---|
IITPE-01 | Quasi-Z-Source Indirect Matrix Converter Fed Induction Motor Drive for Flow Control of Dye in Paper Mill | DRIVES & Z-SOURCE | Abstract |
IITPE-02 | BLDC Motor Drive Based on Bridgeless Landsman PFC Converter With Single Sensor and Reduced Stress on Power Devices | DRIVES & Z-SOURCE | Abstract |
IITPE-03 | DC-Link Capacitor-Current Ripple Reduction in DPWM-Based Back-to-Back Converters | DRIVES & Z-SOURCE | Abstract |
IITPE-04 | A Single-Stage Sensorless Control of a PV based Bore-Well Submersible BLDC Motor | DRIVES & Z-SOURCE | Abstract |
IITPE-05 | Improved Finite Control-Set Model-Based Direct Power Control of BLDC Motor with Reduced Torque Ripple | DRIVES & Z-SOURCE | Abstract |
IITPE-06 | High-Precision Sensorless Drive for High-Speed BLDC Motors Based on the Virtual Third Harmonic Back-EMF | DRIVES & Z-SOURCE | Abstract |
IITPE-07 | Commutation Torque Ripple Reduction in the BLDC Motor Using Modified SEPIC and Three-Level NPC Inverter | DRIVES & Z-SOURCE | Abstract |
IITPE-08 | Plug-in Hybrid Electric Vehicles (PHEVs): Replacing Internal Combustion Engine with Clean and Renewable Energy Based Auxiliary Power Sources | DRIVES & Z-SOURCE | Abstract |
IITPE-09 | Implementation of a Grid-Integrated PV-Battery System for Residential and Electrical Vehicle Applications | DRIVES & Z-SOURCE | Abstract |
IITPE-10 | Modeling, Design, Control, and Implementation of a Modified Z-Source Integrated PV/Grid/EV DC Charger/Inverter | DRIVES & Z-SOURCE | Abstract |
IITPE-11 | Isolated SEPIC DC–DC Converter With Ripple-Free Input Current and Lossless Snubber | DRIVES & Z-SOURCE | Abstract |
IITPE-12 | A High Performance Impedance-Source Converter with Switched Inductor | DRIVES & Z-SOURCE | Abstract |
IITPE-13 | High Step-Up Quasi-Z Source DC-DC Converter | DRIVES & Z-SOURCE | Abstract |
IITPE-14 | Study on A High Voltage Gain SEPIC-Based DC-DC Converter with Continuous Input Current for Sustainable Energy Applications | DRIVES & Z-SOURCE | Abstract |
IITPE-15 | Single-Phase Hybrid Switched-Capacitor Voltage-Doubler SEPIC PFC Rectifiers | DRIVES & Z-SOURCE | Abstract |
IITPE-16 | Hybrid Switched-Capacitor/Switched-Quasi-Z-Source Bidirectional DC-DC Converter With Wide-Voltage-Gain Range for Hybrid Energy Sources EVs | DRIVES & Z-SOURCE | Abstract |
CODE | PROJECT NAME | TITLE | DOWNLOAD |
---|---|---|---|
IITPE-01 | Improved Modulation Strategy Using Dual Phase Shift Modulation for Active Commutated Current-Fed Dual Active Bridge | CONVERTERS | Abstract |
IITPE-02 | A Switched-Capacitor Bidirectional DC-DC Converter with Wide Voltage Gain Range for Electric Vehicles with Hybrid Energy Sources | CONVERTERS | Abstract |
IITPE-03 | A Common Ground Switched-Quasi-Z-Source Bidirectional DC–DC Converter With Wide-Voltage-Gain Range for EVs With Hybrid Energy Sources | CONVERTERS | Abstract |
IITPE-04 | A Quadruple Active Bridge Converter for the Storage Integration on the More Electric Aircraft | CONVERTERS | Abstract |
IITPE-05 | On an Electric Scooter With G2V/V2H/V2G and Energy Harvesting Functions | CONVERTERS | Abstract |
IITPE-06 | PV Battery Charger Using an L3C Resonant Converter for Electric Vehicle Applications | CONVERTERS | Abstract |
IITPE-07 | High Efficiency Bridgeless Single-Power-Conversion Battery Charger for Light Electric Vehicles | CONVERTERS | Abstract |
IITPE-08 | A PWM LLC Type Resonant Converter Adapted to Wide Output Range in PEV Charging Applications. | CONVERTERS | Abstract |
IITPE-09 | Zero-Voltage and Zero-Current Switching PWM DC–DC Converter Using Controlled Secondary Rectifier With One Active Switch and Non dissipative Turn-Off Snubber | CONVERTERS | Abstract |
IITPE-10 | Hybrid Control of Single-Inductor Multiple-Output Converters | CONVERTERS | Abstract |
IITPE-11 | Analysis and Design of an Input-Series Two-Transistor Forward Converter For High-Input Voltage Multiple-Output Applications | CONVERTERS | Abstract |
IITPE-12 | An Independently Controlled Single-PWM Multiple-Output Narrow-Band Resonant Converter | CONVERTERS | Abstract |
IITPE-13 | A Hybrid Resonant ZCS PWM Converter for Renewable Energy Sources Connecting to MVDC Collection System | CONVERTERS | Abstract |
IITPE-14 | A New ZVS Full-Bridge DC–DC Converter for Battery Charging With Reduced Losses Over Full-Load Range | CONVERTERS | Abstract |
CODE | PROJECT NAME | TITLE | DOWNLOAD |
---|---|---|---|
IITPE-01 | Interleaved-Input Series-Output Ultra High Voltage Gain DC-DC Converter | PFC & HIGH VOLTAGE | Abstract |
IITPE-02 | Advanced Digital Controller for Improving Input Current Quality of Integrated Active Virtual Ground-Bridgeless PFC | PFC & HIGH VOLTAGE | Abstract |
IITPE-03 | Multitrack Power Factor Correction Architecture | PFC & HIGH VOLTAGE | Abstract |
IITPE-04 | Family of ZVT Interleaved Converters With Low Number of Components | PFC & HIGH VOLTAGE | Abstract |
IITPE-05 | Combined Multilevel and Two-Phase Interleaved LLC Converter With Enhanced Power Processing Characteristics and Natural Current Sharing | PFC & HIGH VOLTAGE | Abstract |
IITPE-06 | Interleaved Current-Driven Phase-Shift Full-Bridge Converter With Magnetic Integration and Voltage Doubler Rectifiers | PFC & HIGH VOLTAGE | Abstract |
IITPE-07 | New Bridgeless Buck PFC Converter with Improved Input Current and Power Factor | PFC & HIGH VOLTAGE | Abstract |
IITPE-08 | A Wide-Input-Range High-Efficiency Step-down Power Factor Correction Converter Using Variable Frequency Multiplier Technique | PFC & HIGH VOLTAGE | Abstract |
IITPE-09 | Improvement of Power-Conversion Efficiency of AC–DC Boost Converter Using 1:1 Transformer | PFC & HIGH VOLTAGE | Abstract |
IITPE-10 | High Step-Up DC–DC Converter with Active Soft-Switching and Voltage Clamping for Renewable Energy Systems | PFC & HIGH VOLTAGE | Abstract |
IITPE-11 | High-Efficiency High Step-Up DC–DC Converter With Dual Coupled Inductors for Grid-Connected Photovoltaic Systems | PFC & HIGH VOLTAGE | Abstract |
IITPE-12 | High Step-Up Resonant DC–DC Converter With Ripple-Free Input Current for Renewable Energy Systems | PFC & HIGH VOLTAGE | Abstract |
IITPE-13 | Analysis and Design of High-Efficiency Hybrid High Step-Up DC-DC Converter for Distributed PV Generation Systems | PFC & HIGH VOLTAGE | Abstract |
IITPE-14 | Voltage-Lift Technique Based Non isolated Boost DC–DC Converter: Analysis and Design | PFC & HIGH VOLTAGE | Abstract |
IITPE-15 | High Step-Up Coupled-Inductor Cascade Boost DC–DC Converter With Lossless Passive Snubber | PFC & HIGH VOLTAGE | Abstract |
IITPE-16 | Synthesis and Comparative Analysis of Very High Step-Up DC–DC Converters Adopting Coupled-Inductor and Voltage Multiplier Cells | PFC & HIGH VOLTAGE | Abstract |
CODE | PROJECT NAME | TITLE | DOWNLOAD |
---|---|---|---|
IITPE-01 | Nonisolated Harmonics-Boosted Resonant DC/DC Converter With High- Step-Up Gain | INVERTER & LED APPLICATIONS | Abstract |
IITPE-02 | Modified High-Efficiency LLC Converters With Two Split Resonant Branches for Wide Input-Voltage Range Applications | INVERTER & LED APPLICATIONS | Abstract |
IITPE-03 | A Voltage Quadrupler Rectifier Based Pulse–Width–Modulated LLC Converter with Wide Output Range | INVERTER & LED APPLICATIONS | Abstract |
IITPE-04 | Dynamic Modeling and Controller Design of Dual-Mode Cuk Inverter in Grid-Connected PV/TE Applications | INVERTER & LED APPLICATIONS | Abstract |
IITPE-05 | Improved Power Quality Switched Inductor Cuk Converter for Battery Charging Application | INVERTER & LED APPLICATIONS | Abstract |
IITPE-06 | Isolated Bidirectional DC–DC Converter with Quasi-Resonant Zero-Voltage Switching for Battery Charge Equalization | INVERTER & LED APPLICATIONS | Abstract |
IITPE-07 | Photovoltaic AC Module Based on a Cuk Converter with a Switched-Inductor Structure | INVERTER & LED APPLICATIONS | Abstract |
IITPE-08 | An AC–DC LED Driver with an Additional Active Rectifier and a Unidirectional Auxiliary Circuit for AC Power Ripple Isolation | INVERTER & LED APPLICATIONS | Abstract |
IITPE-09 | Loss Analysis for Efficiency Improvement of the Integrated Buck-Flyback LED Driver | INVERTER & LED APPLICATIONS | Abstract |
IITPE-10 | A PFC Single-Coupled-Inductor Multiple-Output LED Driver without Electrolytic Capacitor | INVERTER & LED APPLICATIONS | Abstract |
IITPE-11 | A Single-Stage Integrated Boost-LLC AC-DC Converter with Quasi-Constant Bus Voltage for Multi-channel LED Street-Lighting Applications | INVERTER & LED APPLICATIONS | Abstract |
IITPE-12 | A Single-Phase Single-Stage Switched-Boost Inverter With Four Switches | INVERTER & LED APPLICATIONS | Abstract |
IITPE-13 | Decentralized Control for Fully Modular Input-Series Output-Parallel (ISOP) Inverter System Based on the Active Power Inverse-Droop Method | INVERTER & LED APPLICATIONS | Abstract |
IITPE-14 | Buck–Boost Dual-Leg-Integrated Step-Up Inverter With Low THD and Single Variable Control for Single-Phase High-Frequency AC Microgrids | INVERTER & LED APPLICATIONS | Abstract |
IITPE-15 | Performance Evaluation of the Single-Phase Split-Source Inverter Using an Alternative DC–AC Configuration | INVERTER & LED APPLICATIONS | Abstract |