Project Overview
Project Title: 200 sq.m. Distributed Solar Carport PV System Project
Covered Area: 200 sq.m. (~2,153 sq.ft.) | Vehicle Capacity: 12 – 16 Standard Parking Spaces
Summary:
This project utilizes a 200-square-meter parking footprint to construct an integrated, medium-scale distributed solar carport system. Combining heavy-duty, weather-resistant structural framing with high-efficiency PV panels, the system transforms open-air parking into an active green energy station. Designed to shelter 12 to 16 vehicles, it generates clean electricity for local consumption or grid feed-in, making it ideal for commercial facilities, industrial parks, hotels, and luxury residential complexes.
Technical Specifications
| Parameter / Item | Value / Metric | Description & Notes |
| Total Canopy Area | 200 sq.m. (~2,153 sq.ft.) | Accommodates 12 to 16 standard vehicle spots |
| Installed Capacity | ~35 kWp – 40 kWp | High-efficiency Mono-PERC / TOPCon Solar Modules |
| Est. Annual Energy Yield | ~42,000 – 52,000 kWh/year | Calculated based on 1,200–1,300 peak sun hours |
| Structural Frame | Hot-Dip Galvanized Steel / Anodized Aluminum | High durability with long-term anti-corrosion rating |
| Waterproofing System | Structural water drainage channels | 100% leak-proof sealing between modules |
| EV Charger Compatibility | Supports 4–8 AC/DC Charging Stations | Ready for "Solar-Storage-EV Charging" integration |
Key Project Advantages
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Commercial Space Optimization: Converts static, open-air parking areas into value-generating power units without requiring additional land acquisition.
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All-Weather Vehicle Protection: Shields vehicles against harsh sunlight, UV degradation, heavy rain, snow, and hail, significantly reducing cabin temperature during hot seasons.
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Operational Cost Reduction: Produces over 40,000 kWh of clean power annually, significantly offsetting peak-hour utility bills for commercial and industrial users.
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Microgrid & EV Ready: Perfectly designed to integrate with energy storage systems (BESS) and EV fast-charging stations to create a self-sustaining Solar-Storage-Charging Hub.