Solar PV Systems
Array sizing, irradiance-based generation and performance assessment for grid or standalone operation.
Renewable Energy
Support for solar, wind and hybrid renewable systems — resource assessment, modelling, yield analysis and electrical integration, scoped around your coursework, assignment or graduation project.
System Routes
The scope can cover one technology in depth or combine several into a hybrid system with storage and grid or off-grid integration.
Array sizing, irradiance-based generation and performance assessment for grid or standalone operation.
Turbine selection, wind resource evaluation and aerodynamic or structural checks on the rotor.
PV–wind combinations with battery support, load matching and grid or off-grid operation.
Analysis Outputs
Results are organised so each number in the report has a model, a figure and an explanation behind it.
Work Approach
Assessment feeds the model, and the model feeds the results — both are documented together.
Software Used
Each project is scoped to the software already used in the course, or to the tool that fits the deliverable best.
See the full software overview on the Software Expertise page →
Selected Technical Experience
These visuals demonstrate technical experience. Each student project is reviewed and scoped independently.
Hybrid
Hybrid PV–Wind ModelMATLAB / Simulink
Offshore
Floating Wind TurbineAQWA · Offshore Wind
Storage
PV + Fuel Cell SystemMATLAB / Simulink
Project images are presented to demonstrate technical capability and do not imply university endorsement or permission to reuse the work as an academic submission.
Where This Fits
Resource studies and system models connect into graduation projects and research workflows.
A finished model is not required. Site data, screenshots, calculation notes or a partial design are enough to begin.