Assessfy Pvt. Ltd Moderate 6 milestones 50 marks

Solar Wireless Electric Vehicle Charging System

Real-world project · AICTE-aligned · AI-graded · Audit-ready certificate

6
Milestones
1
Available mentors
0
Enrolled students
5
Core skills
About this project

Solar Wireless Electric Vehicle Charging System

Objective: To develop a prototype system for wirelessly charging electric vehicles using solar energy.

Context: As India pushes for clean mobility and renewable energy adoption, convenient and sustainable EV charging solutions are vital for widespread electric vehicle usage. Integrating wireless charging with solar power addresses grid dependency and user convenience.

What you'll build: You will design a wireless charging circuit using inductive coils, integrate it with a solar power supply, and manage energy flow with embedded systems like Arduino or Raspberry Pi. The project includes PCB design, power electronics configuration, and hands-on testing with actual loads to validate the system.

Deliverables: A working prototype of the solar-powered wireless charging system, test results, and a demonstration report.

Milestones
1.
No deliverable required for this milestone.
2. Requirement analysis and feasibility study
10 marks 6d
Document the functional and technical requirements for a solar-powered wireless EV charging system. Include a feasibility analysis covering power needs, wireless charging standards, solar energy availability, and potential integration challenges. 'Done' means a clear, referenced report justifying project viability and outlining constraints.
3. Design of wireless charging circuit
10 marks 6d
Design and submit a detailed schematic of the wireless charging circuit, specifying all major components (coils, power electronics, control circuitry) and their ratings. Provide calculations supporting your design choices. 'Done' means a circuit diagram ready for prototyping, with rationale for each component selection.
4. Integration with solar power system
10 marks 6d
Create a block diagram and wiring plan showing how the wireless charging circuit interfaces with the solar power system, including charge controllers and energy storage. Explain how power flows from solar panels to the vehicle. 'Done' means a clear integration plan with all connections and control logic documented.
5. Testing with load
10 marks 6d
Assemble the integrated system and conduct tests using a representative load (e.g., resistive or battery load simulating an EV). Record input/output voltages, currents, and charging efficiency. 'Done' means a test report with measured data, analysis of results, and identification of any issues.
6. Final prototype demonstration
10 marks 6d
Demonstrate the working prototype of the solar wireless EV charging system in a video or live session. Show the system charging a load, and explain each subsystem's role. 'Done' means a functioning prototype with clear evidence of wireless charging powered by solar energy.
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Upcoming sessions
SessionWindowEnrolled
Solar Wireless Electric Vehicle Charging System 11 Jun 2026 to 10 Jun 2028 0
Skills you'll learn
Wireless power transferSolar power integrationPower electronicsEmbedded systemsPCB design
Tools used
Solar panels Inductive charging coils Arduino or Raspberry Pi Power management ICs Multimetersoldering kit
Prerequisites
Basics of electromagnetism Understanding of solar panels and energy storage Knowledge of EV battery systems
Available mentors
Priyang Kumar
Free
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You'll earn — Certificate (PDF)

AICTE-aligned Project Completion Certificate

A formal, audit-ready PDF certificate issued by Assessfy + your institute on successful completion. Includes AICTE credit hours, your evaluator's signature, and a QR code for third-party verification.

Certificate of Project Completion

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has successfully completed the project

Solar Wireless Electric Vehicle Charging System

Auto-issued on completion QR-verifiable
You'll earn — Digital Badge

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