MATLAB/Simulation for Battery Charging Algorithms
Budget: ₹600 – ₹3,000 INR
Project Requirement: MATLAB/Simulink Simulation for Battery Charging Algorithms
Objective:
I need a MATLAB/Simulink simulation comparing Constant Current-Constant Voltage (CC-CV) Charging and Pulse Charging for a Lithium-Ion Battery. The simulation should provide detailed results focusing on efficiency, charging time, and heat generation.
Deliverables Expected from Freelancer:
1. MATLAB/Simulink Simulation:
Develop and provide Simulink models for both CC-CV and Pulse Charging.
Ensure the models are well-structured and properly working.
2. Running the Models & Results Generation:
Run both simulations and provide graphs & data for comparison.
The key results should include:
✅ Charging Time (Total time taken for full charge)
✅ Efficiency (Energy loss during charging)
✅ Heat Generation (Temperature variations, if possible)
✅ Voltage & Current Profiles (Time-based graphs)
✅ SoC vs. Time Curve
3. Explanation & Documentation:
Explain the model setup and working (so I can modify or re-run).
Provide a step-by-step guide to re-run and analyze the simulation.
Mention key assumptions and equations used.
Objective:
I need a MATLAB/Simulink simulation comparing Constant Current-Constant Voltage (CC-CV) Charging and Pulse Charging for a Lithium-Ion Battery. The simulation should provide detailed results focusing on efficiency, charging time, and heat generation.
Deliverables Expected from Freelancer:
1. MATLAB/Simulink Simulation:
Develop and provide Simulink models for both CC-CV and Pulse Charging.
Ensure the models are well-structured and properly working.
2. Running the Models & Results Generation:
Run both simulations and provide graphs & data for comparison.
The key results should include:
✅ Charging Time (Total time taken for full charge)
✅ Efficiency (Energy loss during charging)
✅ Heat Generation (Temperature variations, if possible)
✅ Voltage & Current Profiles (Time-based graphs)
✅ SoC vs. Time Curve
3. Explanation & Documentation:
Explain the model setup and working (so I can modify or re-run).
Provide a step-by-step guide to re-run and analyze the simulation.
Mention key assumptions and equations used.