Proteus EV Wireless Charger Simulation
Budget: ₹600 – ₹1,500 INR
I’m building an academic project titled “Advanced Wireless Charging Station for Electric Vehicles” and I need a full-scale, working simulation in Proteus that I can demonstrate as a proof-of-concept. The focus is personal research, so clarity of design and reproducibility matter more to me than industrial packaging.
Scope
• The heart of the model is the transmitter and receiver coil pair. Their geometry, resonance, and mutual coupling need to be modelled accurately so that I can experiment with air-gap variations and coil misalignment.
• Around those coils, the usual power-electronics blocks—full-bridge inverters, rectifiers, resonance networks, and basic control feedback—must be in place. While my immediate priority is the coils, please keep the schematic modular so I can later slot in power-management or communication circuitry without redrawing the entire project.
Deliverables
1. A Proteus project folder containing:
– Complete, annotated schematic with all libraries used
– Simulation setup showing steady-state transfer at the rated voltage/current we will finalise together
2. A brief report (PDF or DOCX) summarising component selection, expected efficiency, and key waveforms (voltage, current, coil coupling factor).
3. Guidance notes on how to tweak coil parameters and rerun the simulation for different gaps or alignments.
Acceptance criteria
• The simulation must run without missing libraries in the current Proteus release.
• Output on the receiver side should remain within 5 % of the target voltage during a 10 % variation in coupling.
• All design files open, simulate, and save correctly on my end.
Tools & versions
Proteus 8.x (latest build preferred) with any third-party SPICE models you deem necessary.
Timeline is flexible for quality work, but I’d like the first draft schematic within a week so I can start reviewing. If you are comfortable meeting these requirements, I’ll forward the preliminary specs and we can fine-tune component ratings together.
Scope
• The heart of the model is the transmitter and receiver coil pair. Their geometry, resonance, and mutual coupling need to be modelled accurately so that I can experiment with air-gap variations and coil misalignment.
• Around those coils, the usual power-electronics blocks—full-bridge inverters, rectifiers, resonance networks, and basic control feedback—must be in place. While my immediate priority is the coils, please keep the schematic modular so I can later slot in power-management or communication circuitry without redrawing the entire project.
Deliverables
1. A Proteus project folder containing:
– Complete, annotated schematic with all libraries used
– Simulation setup showing steady-state transfer at the rated voltage/current we will finalise together
2. A brief report (PDF or DOCX) summarising component selection, expected efficiency, and key waveforms (voltage, current, coil coupling factor).
3. Guidance notes on how to tweak coil parameters and rerun the simulation for different gaps or alignments.
Acceptance criteria
• The simulation must run without missing libraries in the current Proteus release.
• Output on the receiver side should remain within 5 % of the target voltage during a 10 % variation in coupling.
• All design files open, simulate, and save correctly on my end.
Tools & versions
Proteus 8.x (latest build preferred) with any third-party SPICE models you deem necessary.
Timeline is flexible for quality work, but I’d like the first draft schematic within a week so I can start reviewing. If you are comfortable meeting these requirements, I’ll forward the preliminary specs and we can fine-tune component ratings together.