Renewable Energy Projects for ME, MTech, Masters, MS abroad, and PhD students. These Renewable Energy ieee projects are implemented with future work and extension for final year students with research paper writing and publishing. These 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 Renewable Energy Projects
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CFWS: DRL-based Framework for Energy Cost and Carbon Footprint Optimization in Cloud Data Centers
This project focuses on making cloud data centers more energy-efficient and environmentally friendly. It uses artificial intelligence to decide when and where to move virtual machines across data centers. This helps reduce electricity use and carbon emissions while keeping services running smoothly. The system also minimizes unnecessary machine movements, saving time and energy. -
Grid-Connected Hybrid Renewable Energy System under Various Operating Conditions
This project studies a system that uses both solar panels and wind turbines together to generate electricity. The system connects directly to the power grid and does not use batteries. Combining solar and wind helps provide more reliable energy because when one source is weak, the other can compensate. The system was tested using computer simulations to see how well it works under different conditions. -
Energy Management System for Hybrid Renewable Energy-Based Electric Vehicle Charging Station
This project is about making electric vehicle charging cheaper and greener. It uses solar and biogas energy to power the charging station. A smart system decides the best time and amount of power to charge vehicles. This approach saves money and reduces pollution while being profitable for the station owner. -
Energy Management and Power Quality Improvement of Hybrid Renewable Energy Generation System Using Coordinated Control Scheme
This project focuses on improving the quality and stability of electricity from renewable sources like solar and wind. It uses a smart device to control the flow of power and remove unwanted disturbances. The system adjusts itself automatically to provide steady electricity to homes and industries. Tests show it works well and reduces power fluctuations significantly. -
Distributed Energy Resources Based EV Charging Station With Seamless Connection to Grid
This project focuses on charging electric vehicles using solar panels and fuel cells. It allows cars to charge even when the main power grid is down. The system can also send power back to the grid when needed. It ensures stable and clean electricity while charging, even in weak grid conditions. -
Grid Integrated Solar Photovoltaic Converter Control for Power Quality Enhancement
This project focuses on improving how solar power systems connect to the electricity grid. It uses a smart controller to make the power from solar panels clean and stable, even when household devices create disturbances. The system can reduce electrical noise, balance the load, and improve overall efficiency. Simulations show that it meets standard power quality requirements. -
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. -
Partial Power Conversion and High Voltage Ride-Through Scheme for a PV-Battery Based Multiport Multi-Bus Power Router
This project builds a smart system that can manage power from solar panels, batteries, and the grid. It allows energy to move smoothly in different directions depending on the need. The system reduces energy loss by converting only the part of power that must be adjusted. Tests and simulations show that the method works well in real conditions.
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