Assessfy Pvt. Ltd Moderate 5 milestones 50 marks

Hybrid Inverter With Solar Battery Charging

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

5
Milestones
1
Available mentors
0
Enrolled students
4
Core skills
About this project

Hybrid Inverter With Solar Battery Charging

Objective: Design a hybrid inverter system with integrated solar battery charging for uninterrupted power supply.

Context: Reliable electricity is a challenge in many parts of India, making efficient solar-powered backup systems vital for homes and businesses.

What you'll build: You will integrate solar panels and grid inputs, set up battery charging using a charge controller, and design an inverter circuit with MOSFET/IGBT components. Automation via microcontroller enables seamless load switching, and the system will be tested with real appliances.

Deliverables: Complete hybrid inverter prototype, circuit diagrams, automation code, and testing documentation.

Milestones
1. Solar and grid input integration
10 marks 6d
Integrate both solar panel and grid AC inputs into your system, ensuring safe and reliable switching between sources. Submit a wiring diagram and photos of your assembled input stage, clearly labeling all connections. Demonstrate that your setup can accept power from either source without cross-interference.
2. Battery charging setup
10 marks 6d
Configure the battery charging circuit to accept input from both solar and grid sources. Provide a schematic and photos of your charging setup, including charge controller details. Show that the battery charges effectively from both sources and document voltage/current readings during charging.
3. Inverter circuit design and implementation
10 marks 6d
Design and assemble the inverter circuit to convert DC battery output to AC suitable for household appliances. Submit the circuit schematic, component list, and photos of your assembled inverter. Demonstrate stable AC output at the required voltage and frequency using measurement screenshots or logs.
4. Load switching automation
10 marks 6d
Implement an automated load switching mechanism that selects between grid, solar, and battery power based on availability and battery status. Submit your control logic diagram and code (if microcontroller-based), along with photos of the switching hardware. Show evidence that loads are switched seamlessly without interruption.
5. Final testing with appliances
10 marks 6d
Connect real household appliances (e.g., fan, light) to your system and perform comprehensive testing under different input and battery conditions. Submit a test log with photos or videos showing appliances operating from each power source. Confirm that the system maintains stable operation and protects appliances during source transitions.
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Upcoming sessions
SessionWindowEnrolled
Hybrid Inverter With Solar Battery Charging 11 Jun 2026 to 10 Jun 2028 0
Skills you'll learn
Power electronicsInverter designBattery managementEmbedded systems
Tools used
Solar panels Charge controller Inverter circuit (MOSFET/IGBT-based) Microcontroller (optional for automation) Batteries (Lead-acid/Li-ion)
Prerequisites
Inverter and rectifier knowledge Circuit design and simulation Embedded control
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

Hybrid Inverter With Solar Battery Charging

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

Shareable LinkedIn / Resume Skill Badge

A compact, verifiable Open-Badges-2.0-compliant digital credential. Add to your LinkedIn profile, GitHub README, or resume in one click. Recruiters can validate authenticity via a unique URL.

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