Reactive Power Projects for ME, MTech, Masters, MS abroad, and PhD electrical engineering students. These Reactive Power IEEE projects are implemented with future work and extension for final year students with research paper writing and publishing. These EEE research projects guide final year students to learn, practice, and complete their academic submissions successfully. Each project includes complete source code, project report, PPT, a tutorial, documentation, and a research paper.
Latest Reactive Power Projects
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A Lyapunov-Function Based Controller for 3-Phase Shunt Active Power Filter and Performance Assessment Considering Different System Scenarios
This project is about improving the quality of electricity in power networks. It uses a special device called a shunt active power filter to remove unwanted distortions in the current caused by certain electrical devices. The method relies on a smart control strategy to detect and cancel these distortions. Simulations show that this approach works better than older methods and can handle more renewable energy sources. -
Comparative Analysis and Exploration of a High Gain Input Current Shaped AC-DC Step-Up Converter with Feedback Controller
This project designs a new type of circuit that changes AC electricity to DC electricity more efficiently. It reduces unwanted distortions in the current and improves the power usage. The design uses a smart switching method instead of the usual multiple switches. Tests show it works very efficiently and keeps the electricity flow smooth under different conditions. -
Grid-Connected Induction Motor Using a Floating DC-Link Converter under Unbalanced Voltage Sag
This project protects an induction motor when the power supply voltage becomes weak or uneven. It uses an electronic converter to keep the motor voltage steady so the motor can continue running smoothly. The system needs no separate power source and is useful for machines like pumps and fans. Tests show that the motor can keep working even during voltage problems in the grid. -
High Reactive Power Compensation Accuracy for Cascaded H-Bridge Inverter based Decoupling Feed-Forward Current Vector Controller
This project focuses on improving power systems at electrical substations. It uses a device called STATCOM to keep voltage stable and control power flow. The researchers designed a new controller to make the system faster and more efficient. They tested it using computer simulations to show it works well. -
Modeling and Coordinated Control Design for Brushless Doubly-Fed Induction Generator-Based Wind Turbine to Withstand Grid Voltage Unbalance
This project focuses on making wind turbines work better when the electricity grid is unstable. The researchers designed a new control method that manages both parts of the turbine together. Their approach is simpler, faster, and more stable than older methods. Tests show it keeps the turbine running safely even when grid voltages fluctuate.
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