power electronics ieee projects 2015-2016
power electronics ieee projects 2015-2016
Power Electronics Projects For M.E / M.Tech
S.NO |
TITLE |
CODE |
1 | Hybrid Transformer ZVS/ZCS DC–DC Converter With Optimized Magnetics and Improved Power Devices Utilization for Photovoltaic Module Applications | LM_PE015_01 |
2 | A Novel High Step-up DC/DC Converter Based on Integrating Coupled Inductor and Switched-Capacitor Techniques for Renewable Energy Applications | LM_PE015_02 |
3 | A Bidirectional LLC Resonant Converter With Automatic Forward and Backward Mode Transition | LM_PE015_03 |
4 | Discontinuous Modulation Scheme for a Differential-Mode Cuk Inverter | LM_PE015_04 |
5 | Bridgeless PFC-Modified SEPIC Rectifier With Extended Gain for Universal Input Voltage Applications | LM_PE015_05 |
6 | Transformerless Hybrid Power Filter Based on a Six-Switch Two-Leg Inverter for Improved Harmonic Compensation Performance | LM_PE015_06 |
7 | Resonance Analysis and Soft-Switching Design of Isolated Boost Converter With Coupled Inductors for Vehicle Inverter Application | LM_PE015_07 |
8 | Naturally Clamped Zero-Current Commutated Soft-Switching Current-Fed Push–Pull DC/DC Converter: Analysis, Design, and Experimental Results | LM_PE015_08 |
9 | PFC Cuk Converter-Fed BLDC Motor Drive | LM_PE015_09 |
10 | A Single-Phase Cascaded Multilevel Inverter Based on a New Basic Unit With Reduced Number of Power Switches | LM_PE015_10 |
11 | A High-Efficiency MOSFET Transformerless Inverter for Nonisolated Micro inverter Applications | LM_PE015_11 |
12 | Three-Port DC–DC Converter for Stand-Alone Photovoltaic Systems | LM_PE015_12 |
13 | Boost-Derived Hybrid Converter With Simultaneous DC and AC Outputs | LM_PE015_13 |
14 | Modeling and Controller Design of a Semiisolated Multiinput Converter for a Hybrid PV/Wind Power Charger System | LM_PE015_14 |
15 | The Transformerless Single-Phase Universal Active Power Filter for Harmonic and Reactive Power Compensation | LM_PE015_15 |
16 | A Zero-Voltage-Transition Bidirectional DC/DC Converter | LM_PE015_16 |
17 | A New Resonant Bidirectional DC–DC Converter Topology | LM_PE015_17 |
18 | An Adjustable-Speed PFC Bridgeless Buck–Boost Converter-Fed BLDC Motor Drive | LM_PE015_18 |
19 | Multicell Switched-Inductor/Switched-Capacitor Combined Active-Network Converters | LM_PE015_19 |
20 | A Four-Switch Three-Phase SEPIC Based Inverter | LM_PE015_20 |
21 | A Three-Level Quasi-Two-Stage Single-Phase PFC Converter with Flexible Output Voltage and Improved Conversion Efficiency | LM_PE015_21 |
22 | A Family of Multiport Buck–Boost Converters Based on DC-Link-Inductors (DLIs) | LM_PE015_22 |
23 | A Grid-Connected Dual Voltage Source Inverter With Power Quality Improvement Features | LM_PE015_23 |
24 | Transformerless Hybrid Power Filter Based on a Six-Switch Two-Leg Inverter for Improved Harmonic Compensation Performance | LM_PE015_24 |
25 | High Step-Up Converter With Three-Winding Coupled Inductor for Fuel Cell Energy Source Applications | LM_PE015_25 |
26 | A Multilevel Energy Buffer and Voltage Modulator for Grid-Interfaced Micro Inverters | LM_PE015_26 |
27 | Analytical Model of the Half-Bridge Series Resonant Inverter for Improved Power Conversion Efficiency and Performance | LM_PE015_27 |
28 | An Adaptive ZVS Full-Bridge DC–DC Converter With Reduced Conduction Losses and Frequency Variation Range | LM_PE015_28 |
29 | Analysis of the Interleaved Isolated Boost Converter With Coupled Inductors | LM_PE015_29 |
30 | A Voltage-Controlled DSTATCOM for Power-Quality Improvement | LM_PE015_30 |
Power Electronics Project Titles For B.E / B.Tech
S.NO |
TITLE |
CODE |
DOWNLOAD |
RENEWABLE ENERGY | |||
1 | A Novel High Step-up DC/DC Converter Based on Integrating Coupled Inductor and Switched-Capacitor Techniques for Renewable Energy Applications | LM_PE015_01 | ABSTRACT |
2 | Hybrid Transformer ZVS/ZCS DC–DC Converter With Optimized Magnetics and Improved Power Devices Utilization for Photovoltaic Module Applications | LM_PE015_02 | ABSTRACT |
3 | Performance of Medium-Voltage DC-Bus PV System Architecture Utilizing High-Gain DC–DC Converter | LM_PE015_03 | ABSTRACT |
4 | A Single Stage CCM Zeta Microinverter for Solar Photovoltaic AC Module | LM_PE015_04 | ABSTRACT |
5 | Topology Review and Derivation Methodology of Single-Phase Transformerless Photovoltaic Inverters for Leakage Current Suppression | LM_PE015_05 | ABSTRACT |
6 | A High Efficiency Flyback Micro-inverter With a New Adaptive Snubber for Photovoltaic Applications | LM_PE015_06 | ABSTRACT |
7 | High Step-Up Converter With Three-Winding Coupled Inductor for Fuel Cell Energy Source Applications | LM_PE015_07 | ABSTRACT |
8 | Optimized Operation of Current-Fed Dual Active Bridge DC-DC Converter for PV Applications | LM_PE015_08 | ABSTRACT |
9 | Online Variable Topology-Type Photovoltaic Grid-Connected Inverter | LM_PE015_09 | ABSTRACT |
10 | High-Gain Resonant Switched-Capacitor Cell-Based DC/DC Converter for Offshore Wind Energy Systems | LM_PE015_10 | ABSTRACT |
MICROGRID APPLICATIONS | |||
11 | An Enhanced Islanding Microgrid Reactive Power, Imbalance Power, and Harmonic Power Sharing Scheme | LM_PE015_11 | ABSTRACT |
12 | A Novel Integrated Power Quality Controller for Microgrid | LM_PE015_12 | ABSTRACT |
13 | Power Control in AC Isolated Microgrids With Renewable Energy Sources and Energy Storage Systems | LM_PE015_13 | ABSTRACT |
VEHICULAR APPLICATIONS | |||
14 | General Analysis and Design Guideline for a Battery Buffer System With DC/DC Converter and EDLC for Electric Vehicles and its Influence on Efficiency | LM_PE015_14 | ABSTRACT |
15 | Reduced-Capacity Smart Charger for Electric Vehicles on Single-Phase Three-Wire Distribution Feeders With Reactive Power Control | LM_PE015_15 | ABSTRACT |
16 | A Non isolated Multi input Multi output DC–DC Boost Converter for Electric Vehicle Applications | LM_PE015_16 | ABSTRACT |
17 | New Interleaved Current-Fed Resonant Converter With Significantly Reduced High Current Side Output Filter for EV and HEV Applications | LM_PE015_17 | ABSTRACT |
DRIVES | |||
18 | PFC Cuk Converter-Fed BLDC Motor Drive | LM_PE015_18 | ABSTRACT |
19 | Variable-Form Carrier-Based PWM for Boost-Voltage Motor Driver With a Charge-Pump Circuit | LM_PE015_19 | ABSTRACT |
20 | Sensorless Drive for High-Speed Brushless DC Motor Based on the Virtual Neutral Voltage | LM_PE015_20 | ABSTRACT |
21 | Independent Control of Two Permanent-Magnet Synchronous Motors Fed by a Four-Leg Inverter | LM_PE015_21 | ABSTRACT |
22 | Online Inverter Fault Diagnosis of Buck-Converter BLDC Motor Combinations | LM_PE015_22 | ABSTRACT |
23 | A Unity Power Factor Bridgeless Isolated Cuk Converter-Fed Brushless DC Motor Drive | LM_PE015_23 | ABSTRACT |
CONVERTERS PFC,ZVS,ZCS,HIGH VOLTAGE, INTERLEAVED, SWITCHED CAPACITOR, BIDIRECTIONAL, MULTIPORT, MULTIPLE OUTPUT, RESONANT CONVERTERS, INVERTER, MULTI LEVEL INVERTER, AC TO AC CONVERTER, DC TO DC CONVERTER |
|||
24 | Bridgeless PFC-Modified SEPIC Rectifier With Extended Gain for Universal Input Voltage Applications | LM_PE015_24 | ABSTRACT |
25 | A Three-Level Quasi-Two-Stage Single-Phase PFC Converter with Flexible Output Voltage and Improved Conversion Efficiency | LM_PE015_25 | ABSTRACT |
26 | Offline Soft-Switched LED Driver Based on an Integrated Bridgeless Boost–Asymmetrical Half-Bridge Converter | LM_PE015_26 | ABSTRACT |
27 | Front-End Converter With Integrated PFC and DC–DC Functions for a Fuel Cell UPS With DSP-Based Control | LM_PE015_27 | ABSTRACT |
28 | Loss-Free Resistor-Based Power Factor Correction Using a Semi-Bridgeless Boost Rectifier in Sliding-Mode Control | LM_PE015_28 | ABSTRACT |
29 | A Novel Control Scheme of Quasi-Resonant Valley-Switching for High-Power-Factor AC-to-DC LED Drivers | LM_PE015_29 | ABSTRACT |
30 | Power Factor Corrected Zeta Converter Based Improved Power Quality Switched Mode Power Supply | LM_PE015_30 | ABSTRACT |
31 | Dual Active Bridge-Based Battery Charger for Plug-in Hybrid Electric Vehicle with Charging Current Containing Low Frequency Ripple | LM_PE015_31 | ABSTRACT |
32 | A Novel Wall-Switched Step-Dimming Concept in LED Lighting Systems using PFC Zeta Converter | LM_PE015_32 | ABSTRACT |
33 | Analysis and Design of Single-Switch Forward-Flyback Two-Channel LED Driver with Resonant-Blocking Capacitor | LM_PE015_33 | ABSTRACT |
34 | Resonance Analysis and Soft-Switching Design of Isolated Boost Converter With Coupled Inductors for Vehicle Inverter Application | LM_PE015_34 | ABSTRACT |
35 | An Adaptive ZVS Full-Bridge DC–DC Converter With Reduced Conduction Losses and Frequency Variation Range | LM_PE015_35 | ABSTRACT |
36 | An Integrated High-Power-Factor Converter with ZVS Transition | LM_PE015_36 | ABSTRACT |
37 | A Novel Load Adaptive ZVS Auxiliary Circuit for PWM Three-Level DC–DC Converters | LM_PE015_37 | ABSTRACT |
38 | Hybrid Modulated Extended Secondary Universal Current-Fed ZVS Converter for Wide Voltage Range: Analysis, Design, and Experimental Results | LM_PE015_38 | ABSTRACT |
39 | Two-Stage Power Conversion Architecture Suitable for Wide Range Input Voltage | LM_PE015_39 | ABSTRACT |
40 | Naturally Clamped Zero-Current Commutated Soft-Switching Current-Fed Push–Pull DC/DC Converter: Analysis, Design, and Experimental Results | LM_PE015_40 | ABSTRACT |
41 | A Soft-Switched Asymmetric Flying Capacitor Boost Converter with Synchronous Rectification | LM_PE015_41 | ABSTRACT |
42 | A High Gain Input-Parallel Output-Series DC-DC Converter With Dual Coupled Inductors | LM_PE015_42 | ABSTRACT |
43 | Bidirectional PWM Converter Integrating Cell Voltage Equalizer Using Series-Resonant Voltage Multiplier for Series-Connected Energy Storage Cells | LM_PE015_43 | ABSTRACT |
44 | Multicell Switched-Inductor/Switched-Capacitor Combined Active-Network Converters | LM_PE015_44 | ABSTRACT |
45 | Reliability Evaluation of Conventional and Interleaved DC–DC Boost Converters | LM_PE015_45 | ABSTRACT |
46 | A Novel Switched-Coupled-Inductor DC–DC Step-Up Converter and Its Derivatives | LM_PE015_46 | ABSTRACT |
47 | A New Interleaved Three-Phase Single-Stage PFC AC–DC Converter With Flying Capacitor | LM_PE015_47 | ABSTRACT |
48 | Ripple Minimization Through Harmonic Elimination in Asymmetric Interleaved Multiphase dc-dc Converters | LM_PE015_48 | ABSTRACT |
49 | Analysis of the Interleaved Isolated Boost Converter With Coupled Inductors | LM_PE015_49 | ABSTRACT |
50 | High Step-Up Interleaved Forward-Flyback Boost Converter With Three-Winding Coupled Inductors | LM_PE015_50 | ABSTRACT |
51 | A Novel Transformer-less Interleaved Four-Phase Step-down DC Converter with Low Switch Voltage Stress and Automatic Uniform Current Sharing Characteristics | LM_PE015_51 | ABSTRACT |
52 | Nonisolated High Step-Up DC–DC Converters Adopting Switched-Capacitor Cell | LM_PE015_52 | ABSTRACT |
53 | A Family of High-Voltage Gain Single-Phase Hybrid Switched-Capacitor PFC Rectifiers | LM_PE015_53 | ABSTRACT |
54 | A High-Efficiency Resonant Switched Capacitor Converter With Continuous Conversion Ratio | LM_PE015_54 | ABSTRACT |
55 | A Cascade Point of Load DC-DC Converter with a Novel Phase Shifted Switched Capacitor Converter Output Stage | LM_PE015_55 | ABSTRACT |
56 | Modeling Approaches for DC–DC Converters With Switched Capacitors | LM_PE015_56 | ABSTRACT |
57 | A Zero-Voltage-Transition Bidirectional DC/DC Converter | LM_PE015_57 | ABSTRACT |
58 | Steady-State Analysis of a ZVS Bidirectional Isolated Three Phase DC-DC Converter Using Dual Phase-Shift Control with Variable Duty Cycle | LM_PE015_58 | ABSTRACT |
59 | Novel High-Conversion-Ratio High-Efficiency Isolated Bidirectional DC–DC Converter | LM_PE015_59 | ABSTRACT |
60 | DC–DC Converter for Dual-Voltage Automotive Systems Based on Bidirectional Hybrid Switched-Capacitor Architectures | LM_PE015_60 | ABSTRACT |
61 | A Novel PWM High Voltage Conversion Ratio Bi-Directional Three-Phase DC/DC Converter with Y-Δ Connected Transformer | LM_PE015_61 | ABSTRACT |
62 | Performance Analysis of Bi-directional DC-DC Converters for Electric Vehicles | LM_PE015_62 | ABSTRACT |
63 | A Nonisolated Three-Port DC–DC Converter and Three-Domain Control Method for PV-Battery Power Systems | LM_PE015_63 | ABSTRACT |
64 | A Power Decoupling Method Based on Four-Switch Three-Port DC/DC/AC Converter in DC Microgrid | LM_PE015_64 | ABSTRACT |
65 | Three-Port DC–DC Converter for Stand-Alone Photovoltaic Systems | LM_PE015_65 | ABSTRACT |
66 | A Family of Multiport Buck–Boost Converters Based on DC-Link-Inductors (DLIs) | LM_PE015_66 | ABSTRACT |
67 | An Isolated Three-Port Bidirectional DC-DC Converter for Photovoltaic Systems with Energy Storage | LM_PE015_67 | ABSTRACT |
68 | A High Step-Down Multiple Output Converter With Wide Input Voltage Range Based on Quasi Two-Stage Architecture and Dual-Output LLC Resonant Converter | LM_PE015_68 | ABSTRACT |
69 | Single-Inductor Dual-Output Buck–Boost Power Factor Correction Converter | LM_PE015_69 | ABSTRACT |
70 | Hybrid Phase-Shift-Controlled Three-Level and LLC DC–DC Converter With Active Connection at the Secondary Side | LM_PE015_70 | ABSTRACT |
71 | Analysis and Design of LLC Resonant Converters With Capacitor–Diode Clamp Current Limiting | LM_PE015_71 | ABSTRACT |
72 | A Secondary-Side Phase-Shift-Controlled LLC Resonant Converter With Reduced Conduction Loss at Normal Operation for Hold-Up Time Compensation Application | LM_PE015_72 | ABSTRACT |
73 | Optimal Design Methodology for LLC Resonant Converter in Battery Charging Applications Based on Time-Weighted Average Efficiency | LM_PE015_73 | ABSTRACT |
74 | Discontinuous Modulation Scheme for a Differential-Mode Cuk Inverter | LM_PE015_74 | ABSTRACT |
75 | A High-Efficiency MOSFET Transformerless Inverter for Nonisolated Microinverter Applications | LM_PE015_75 | ABSTRACT |
76 | A Multilevel Energy Buffer and Voltage Modulator for Grid-Interfaced Microinverters | LM_PE015_76 | ABSTRACT |
77 | Extended Boost Active-Switched-Capacitor/ Switched-Inductor Quasi-Z-Source Inverters | LM_PE015_77 | ABSTRACT |
78 | Grid-Connected Forward Microinverter With Primary-Parallel Secondary-Series Transformer | LM_PE015_78 | ABSTRACT |
79 | Minimization of the DC Component in Transformerless Three-Phase Grid-Connected Photovoltaic Inverters | LM_PE015_79 | ABSTRACT |
80 | Single Inductor Dual Buck Full-Bridge Inverter | LM_PE015_80 | ABSTRACT |
81 | A Single-Phase Cascaded Multilevel Inverter Based on a New Basic Unit With Reduced Number of Power Switches | LM_PE015_81 | ABSTRACT |
82 | Analytical Model of the Half-Bridge Series Resonant Inverter for Improved Power Conversion Efficiency and Performance | LM_PE015_82 | ABSTRACT |
83 | A Bridgeless BHB ZVS-PWM AC-AC Converter for High-Frequency Induction Heating Applications | LM_PE015_83 | ABSTRACT |
84 | Multi-MOSFET-Based Series Resonant Inverter for Improved Efficiency and Power Density Induction Heating Applications | LM_PE015_84 | ABSTRACT |
85 | Novel Single-Phase PWM AC–AC Converters Solving Commutation Problem Using Switching Cell Structure and Coupled Inductor | LM_PE015_85 | ABSTRACT |
86 | Soft-Switching AC-Link Three-Phase AC–AC Buck–Boost Converter | LM_PE015_86 | ABSTRACT |
87 | Ultra sparse AC-Link Converters | LM_PE015_87 | ABSTRACT |