Sl.No |
PROJECT TITLE |
DOMAIN |
1 |
A Fuel Cell Power Conditioning System With Low-Frequency Ripple-Free Input Current Using a Control-Oriented Power Pulsation Decoupling Strategy |
MATLAB |
2 |
Multiport Converters Based on Integration of Full-Bridge and Bidirectional DC–DC Topologies for Renewable Generation Systems |
MATLAB |
3 |
Voltage Support Control Strategies for Static Synchronous Compensators Under Unbalanced Voltage Sags. |
MATLAB |
4 |
A Space-Vector Modulation Method for Common-Mode Voltage Reduction in Current-Source Converters. |
MATLAB |
5 |
Space Vector Pulse width Amplitude Modulation for a Buck–Boost Voltage/Current Source Inverter. |
MATLAB |
6 |
A Hybrid Cascaded Multilevel Converter for Battery Energy Management Applied in Electric Vehicles. |
MATLAB |
7 |
Optimal Decentralized Voltage Control for Distribution Systems With Inverter-Based Distributed Generators. |
MATLAB |
8 |
Harmonic Reduction Method for a Single-Phase DC–AC Converter Without an Output Filter. |
MATLAB |
9 |
Self-Synchronized Synchronverters: Inverters Without a Dedicated Synchronization Unit. |
MATLAB |
10 |
A Two-Mode Control Scheme With Input Voltage Feed-Forward for the Two-Switch Buck-Boost DC–DC Converter. |
MATLAB |
11 |
A Novel Three-Phase Buck–Boost AC–DC Converter. |
MATLAB |
12 |
Integrated Inverter/Converter Circuit and Control Technique of Motor Drives With Dual-Mode Control for EV/HEV Applications. |
MATLAB |
13 |
Single Power-Conversion AC–DC Converter With High Power Factor and High Efficiency. |
MATLAB |
14 |
A TRIAC Dimmable Single-Switch Electronic Ballast With Power Factor Correction and Lamp Power Regulation. |
MATLAB |
15 |
Space Vector Pulse width Amplitude Modulation for a Buck–Boost Voltage/Current Source Inverter. |
MATLAB |
16 |
A Transformerless Grid-Connected Photovoltaic System Based on the CoupledInductor Single-Stage Boost Three-Phase Inverte.r |
MATLAB |
17 |
Robust Time-Delay Control for the DC–DC Boost Converter. |
MATLAB |
18 |
Autonomous Control of Inverter-Interfaced Distributed Generation Units for Harmonic Current Filtering and Resonance Damping in an Islanded Microgrid. |
MATLAB |
19 |
Modeling of Multi-Terminal VSC HVDC Systems With Distributed DC Voltage Control. |
MATLAB |
20 |
Rolling Multi-Period Optimization to Control Electric Vehicle Charging in Distribution Networks. |
MATLAB |
21 |
High-Voltage Gain Boost Converter Based on Three-State Commutation Cell for Battery Charging Using PV Panels in a Single Conversion Stage. |
MATLAB |
22 |
Coordination Between OLTC and SVC for Voltage Regulation in Unbalanced Distribution System Distributed Generation |
MATLAB |
23 |
Distributed Subgradient-Based Coordination of Multiple Renewable Generators in a Microgrid. |
MATLAB |
24 |
Coordinated Control of Grid Connected Photovoltaic Reactive Power and Battery Energy Storage Systems to Improve the Voltage Profile of a Residential Distribution Feeder. |
MATLAB |
25 |
Cascaded Control System of the Modular Multilevel Converter for Feeding Variable-Speed Drives. |
MATLAB |
26 |
A Bidirectional-Switch-Based Wide-Input Range High-Efficiency Isolated Resonant Converter for Photovoltaic Applications. |
MATLAB |
27 |
A Comparative Study of Two Buck-Type Three-Phase Single-Stage AC–DC Full-Bridge Converters. |
MATLAB |
28 |
A High Voltage Gain DC–DC Converter Integrating Coupled-Inductor and Diode–Capacitor Techniques. |
MATLAB |
29 |
Improvement of Energy Efficiency in Light Railway Vehicles Based on Power Management Control of Wayside Lithium-Ion Capacitor Storage. |
MATLAB |
30 |
A Novel Reduced Switching Loss Bidirectional AC/DC Converter PWM Strategy with Feed - Forward Control for Grid - Tied Micro Grid Systems. |
MATLAB |
31 |
New Extendable Single-Stage Multi-input DC–DC/AC Boost Converter. |
MATLAB |
32 |
A Space Vector Modulator for the High-Switching Frequency Control of Three-Level SiC Inverters. |
MATLAB |
33 |
A Fault-Tolerant Direct Controlled PMSG Drive for Wind Energy Conversion Systems. |
MATLAB |
34 |
A Single-Stage Dual-Active-Bridge-Based Soft Switched AC–DC Converter With Open-Loop Power Factor Correction and Other Advanced Features. |
MATLAB |
35 |
Half-Bridge Integrated ZVS Full-Bridge Converter With Reduced Conduction Loss for Electric Vehicle Battery Chargers. |
MATLAB |
36 |
Analysis and Implementation of a Single Stage Flyback PV-Micro Inverter with Soft Switching. |
MATLAB |
37 |
Analysis and Design of a New Soft-Switching Boost Converter With a Coupled Inductor. |
MATLAB |
38 |
An Efficient Partial Power Processing DC/DC Converter for Distributed PV Architectures. |
MATLAB |
39 |
A Three-Level Integrated AC–DC Converter. |
MATLAB |
40 |
A Novel ZVT-ZCT-PWM Boost Converter. |
MATLAB |
41 |
Bridgeless SEPIC Converter With a Ripple-Free Input Current. |
MATLAB |
42 |
Coordinated Control and Energy Management of Distributed Generation Inverters in a Microgrid. |
MATLAB |
43 |
Modular Multilevel Inverter with New Modulation Method and Its Application to Photovoltaic Grid-Connected Generator. |
MATLAB |
44 |
StatCom Control at Wind Farms With Fixed-Speed Induction Generators Under Asymmetrical Grid Faults. |
MATLAB |
45 |
High Reliability and Efficiency Single-Phase Transformerless Inverter for Grid-Connected Photovoltaic Systems |
MATLAB |
46 |
Control Strategy for Power Flow Management in a PV System Supplying DC Loads. |
MATLAB |
47 |
Simulation of Transient Skin Effect of DC Railway System Based on MATLAB/Simulink. |
MATLAB |
48 |
Performance Investigation of Isolated Wind–Diesel Hybrid Power Systems With WECS Having PMIG. |
MATLAB |
49 |
An Enhanced Micro grid Load Demand Sharing Strategy. |
MATLAB |