MATLAB Inductor Transformer Circuit Simulation
Budget: ₹1,500 – ₹12,500 INR
I need a clear, well-documented MATLAB model of an electrical circuit built around inductors and a transformer so I can study its steady-state and transient performance. The focus is on performance analysis rather than behavioural quirks or failure modes, so accurate numerical results, efficiency figures and waveform plots matter more than visual presentation.
The circuit topology and parameters will be supplied as soon as the project starts; you will translate them into either a pure-MATLAB script or a Simulink file (your choice, as long as it runs in current MATLAB releases without extra toolboxes beyond Simscape Electrical). Please make sure your model captures magnetic coupling, core losses (if practical) and any parasitic elements needed for realistic results.
Deliverables
• The .m or .slx model with clean, editable blocks or functions
• A brief setup note (max one page) explaining how to run the simulation and change key parameters
• Plots or tables showing voltage, current, flux linkage and overall efficiency under the specified operating conditions
Acceptance is based on the model running error-free on my machine, reproducing the supplied test cases within ±2 % of the expected values and following the documentation style described above.
The circuit topology and parameters will be supplied as soon as the project starts; you will translate them into either a pure-MATLAB script or a Simulink file (your choice, as long as it runs in current MATLAB releases without extra toolboxes beyond Simscape Electrical). Please make sure your model captures magnetic coupling, core losses (if practical) and any parasitic elements needed for realistic results.
Deliverables
• The .m or .slx model with clean, editable blocks or functions
• A brief setup note (max one page) explaining how to run the simulation and change key parameters
• Plots or tables showing voltage, current, flux linkage and overall efficiency under the specified operating conditions
Acceptance is based on the model running error-free on my machine, reproducing the supplied test cases within ±2 % of the expected values and following the documentation style described above.